Byounghyun Jeon | 2D Material Laser | Best Researcher Award

Mr. Byounghyun Jeon | 2D Material Laser | Best Researcher Award

Master student of Sungkyunkwan University, South Korea.

Byounghyun Jeon is an accomplished researcher specializing in 2D material laser processing and surface enhancement through Raman scattering. Currently an Associate Professor at Sungkyunkwan University, Jeon has demonstrated profound expertise in innovative laser processing technologies, which he applies to resolve complex material issues and develop cutting-edge solutions. His collaborative work spans multiple academic fields, showcasing his ability to integrate diverse expertise for impactful research outcomes. Jeon is active in publishing his findings in prestigious journals and presenting at major conferences, contributing significantly to the global academic community. He also excels in leadership and mentoring, guiding students and research interns to achieve successful research projects. His commitment to staying at the forefront of materials science and integrating new technologies underscores his dedication to advancing the field. Expanding his research’s broader impact and enhancing collaborative efforts would further strengthen his impressive profile.

Profile
Education

Byounghyun Jeon is currently pursuing a Master of Engineering in Mechanical Engineering at Sungkyunkwan University, South Korea, under the guidance of Associate Professor Kyunghoon Kim. This ongoing program began in September 2022 and represents a critical phase in his advanced research into laser processing of 2D materials. Prior to this, Jeon completed his undergraduate studies in Mechanical and Automotive Engineering at Inje University, South Korea, graduating in July 2014. During his time at Inje University, he was mentored by Professor Byeongsoo Kim, gaining a solid foundation in mechanical engineering principles. This academic background has equipped him with the technical skills and knowledge necessary to excel in his current research endeavors and contribute significantly to the field of materials science. His educational journey reflects a strong commitment to both theoretical understanding and practical application in his areas of expertise.

Professional Experience

Byounghyun Jeon currently serves as a member of the Complex Materials Engineering & Systems (COME) Lab at Sungkyunkwan University, South Korea, under Associate Professor Kyunghoon Kim. His role focuses on advanced research in 2D material laser processing and surface enhancement techniques. Prior to this, he completed an undergraduate internship at the Korea Institute of Science and Technology (KIST) in the Soft Convergence Materials Research Center, where he gained valuable experience in cutting-edge materials research. Jeon also interned at the Automotive Noise and Vibration Control Laboratory at Inje University, contributing to automotive engineering projects. His professional journey includes mandatory military service as a driver in the 28th Infantry Division Headquarters Support Unit, reflecting his diverse background and disciplined approach. This rich blend of academic and practical experience underscores Jeon’s expertise and leadership in material science and engineering.

Research Interest

Byounghyun Jeon’s research interests primarily focus on advanced laser processing technologies for 2D materials and their applications in surface enhancement and Raman scattering. His work involves the development and optimization of laser-engineered composites, particularly for surface-enhanced Raman scattering (SERS) applications. Jeon is dedicated to exploring innovative methods for fabricating and characterizing 2D material composites, leveraging his expertise in laser processing to address complex material challenges. His research aims to enhance the performance of these materials in various applications, including sensors and photonics. Additionally, Jeon actively integrates interdisciplinary approaches, collaborating with experts from diverse fields to advance the understanding and application of 2D materials. His commitment to staying abreast of the latest trends and technologies underscores his dedication to pushing the boundaries of materials science and engineering.

Research Skills

Byounghyun Jeon exhibits a robust set of research skills that underpin his notable contributions to the field of materials science. His expertise in laser processing of 2D materials is marked by a deep understanding of advanced technologies and innovative techniques, enabling him to tackle complex material processing challenges effectively. Jeon’s proficiency extends to a diverse range of analytical instruments, including Raman spectroscopy, photoluminescence, and scanning electron microscopy, which he utilizes to conduct precise and impactful research. His experience in interdisciplinary collaboration highlights his ability to integrate diverse expertise and foster synergies, driving groundbreaking research outcomes. Additionally, Jeon’s strong publication record and active participation in academic conferences demonstrate his capability to disseminate research findings effectively. His leadership in managing research projects and mentoring students reflects his commitment to advancing the field and nurturing the next generation of researchers.

Awards and Recognition

Byounghyun Jeon has earned notable recognition for his contributions to materials science, particularly in the field of 2D materials laser processing. He was honored with the Outstanding Poster Award at the Korean Society of Mechanical Engineers (KSME) special session in 2022, highlighting his innovative work in this area. Jeon’s research has been showcased at prestigious conferences, including the KSME Annual Meeting and the Graduate School Academic Festival at Sungkyunkwan University, where he presented groundbreaking findings on laser-engineered composites for surface-enhanced Raman scattering applications. His work is also featured in high-impact journals such as Materials Today Physics and Advanced Healthcare Materials, further cementing his reputation in the academic community. These accolades reflect his significant contributions to advancing material processing technologies and his commitment to pushing the boundaries of research in his field.

Conclusion

Byounghyun Jeon is a strong candidate for the Research for Best Researcher Award due to his expertise in laser processing, successful interdisciplinary collaborations, active publication record, leadership, and commitment to cutting-edge research. To further strengthen his candidacy, focusing on broadening the impact of his research, improving grant acquisition, and expanding his collaborative network would be beneficial. His proven track record and dedication make him a notable contender for the award.

Publications Top Notes

  • “Recent Trends of Bioanalytical Sensors with Smart Health Monitoring Systems: From Materials to Applications”
    • Authors: TS Vo, T Hoang, TTBC Vo, B Jeon, VH Nguyen, K Kim
    • Journal: Advanced Healthcare Materials
    • Year: 2024
    • Article Number: 2303923
    • Citations: 4
  • “A Comprehensive Review of Laser Processing-Assisted 2D Functional Materials and Their Specific Applications”
    • Authors: TS Vo, B Jeon, T Hoang, KM Lwin, S Han, TTBC Vo, K Kim
    • Journal: Materials Today Physics
    • Year: 2024
    • Article Number: 101536
  • “표면 증강 라만 산란 응용을 위한 레이저 공학 MoS₂-Ag 복합체 제작” (Fabrication of Laser-engineered MoS₂-Ag Composite for Surface-Enhanced Raman Scattering Applications)
    • Authors: 전병현, 이윤경, 한수빈, 김경훈
    • Conference: 대한기계학회 춘추학술대회 (The Korean Society of Mechanical Engineers Spring Conference)
    • Year: 2024
    • Pages: 111-111
  • “레이저 가공을 통한 다층 MoS₂ 소자에서의 PN 접합 형성” (Formation of PN Junctions in Multilayer MoS₂ Devices through Laser Processing)
    • Authors: 한수빈, 이윤경, 전병현, 김경훈
    • Conference: 대한기계학회 춘추학술대회 (The Korean Society of Mechanical Engineers Spring Conference)
    • Year: 2024
    • Pages: 142-142
  • “MoS₂-Ag composite fabrication using 532㎚ continuous laser processing for surface-enhanced Raman scattering application”
    • Authors: B Jeon, Y Lee, S Han, K Kim
    • Conference: 대한기계학회 춘추학술대회 (The Korean Society of Mechanical Engineers Spring Conference)
    • Year: 2023
    • Pages: 2309-2309
  • “레이저 공정 기반 MoS₂-Ag 복합 구조 제작 및 표면 증강 라만 산란 응용” (Fabrication of Laser Processing-Based MoS₂-Ag Composite Structures and Surface-Enhanced Raman Scattering Applications)
    • Authors: 전병현, 이윤경, 김경훈
    • Conference: 대한기계학회 춘추학술대회 (The Korean Society of Mechanical Engineers Spring Conference)
    • Year: 2023
    • Pages: 78-78
  • “Light-driven synthesis of TiO₂/MoSx/Ag for enhanced photocatalysis and self-cleaning ultrafiltration membranes”
    • Authors: Y Lee, T Kim, B Kim, S Hwang, BH Jeon, K Kim
    • Conference: 대한기계학회 춘추학술대회 (The Korean Society of Mechanical Engineers Spring Conference)
    • Year: 2022
    • Pages: 1060-1060

Jaafar Abduo | Prosthodontics | Best Researcher Award

Assoc Prof Dr. Jaafar Abduo | Prosthodontics | Best Researcher Award

Prosthodontist at Melbourne Dental School, Australia.

Dr. Jaafar Abduo is an Associate Professor of Prosthodontics at Melbourne Dental School, University of Melbourne. He holds a PhD from the University of Western Australia and has extensive experience in clinical dentistry. His research focuses on digital workflows, implant prosthodontics, and the evaluation of modern dental manufacturing techniques. Dr. Abduo has published over 90 peer-reviewed papers and has a significant impact on the field, with an h-index of 30 and more than 4,600 citations. He collaborates with leading dental companies and has been awarded multiple national and international grants. Additionally, he serves on various academic and professional committees, contributing to research ethics, curriculum development, and continuing education. Dr. Abduo’s work has been presented at major international conferences, and his innovations have influenced both academic research and clinical practices in prosthodontics globally.

Profile
Education

Dr. Jaafar Abduo’s educational background is distinguished by his extensive training in dentistry and prosthodontics. He earned his Doctor of Philosophy (PhD) by publication from the University of Western Australia in 2016, which reflects his significant contributions to dental research. Prior to this, he completed the Doctor of Clinical Dentistry in Prosthodontics (DClinDent) at the University of Otago, Dunedin, New Zealand, in 2010, underscoring his specialized expertise in prosthodontics. His journey began with a Bachelor of Dental Surgery with credit from the University of Otago in 2004. Additionally, he achieved Membership of the Royal Australasian College of Dental Surgeons in Prosthodontics (MRACDS Pros) through examination in Sydney, Australia, in 2011. This robust educational foundation has equipped Dr. Abduo with the knowledge and skills necessary to advance the field of dental prosthetics.

Professional Experience

Dr. Jaafar Abduo is an accomplished prosthodontist and Associate Professor at the Melbourne Dental School, University of Melbourne. Since January 2020, he has held the position of Associate Professor (Level D) in Prosthodontics, where he also serves as the Convenor for the Doctor of Clinical Dentistry (Prosthodontics) program and the Postgraduate Diploma in Clinical Dentistry (Implants). Dr. Abduo’s career at the Melbourne Dental School began in 2013 as a Senior Lecturer (Level C) in Prosthodontics. Alongside his academic roles, he has been a practicing specialist prosthodontist in private practice since 2011. Dr. Abduo’s expertise spans removable prosthodontics, complex rehabilitation, and implant prosthodontics, and he is actively involved in both teaching and research. His work is well-regarded, with numerous peer-reviewed publications and significant contributions to advancing dental education and clinical practice.

Research Interest

Dr. Jaafar Abduo’s research interests are centered around advancing prosthodontics, with a particular focus on digital dentistry and modern manufacturing techniques. He explores the development and evaluation of digital workflows for diagnostics, conventional, removable, and implant prosthodontics, aiming to improve accuracy and efficiency in dental treatments. His work also includes randomized controlled trials to assess the clinical outcomes of materials such as monolithic zirconia and metal-ceramic implant crowns. Additionally, Dr. Abduo is interested in optimizing digital scanning methods for natural teeth, soft tissue, and implants. His biomechanical studies on implant and natural tooth comparisons, along with his research on the durability of dental prosthetics, contribute to enhancing the quality and longevity of dental restorations. Through his research, Dr. Abduo seeks to bridge the gap between clinical practice and technological advancements, ultimately improving patient outcomes in prosthodontics.

Research Skills

Dr. Jaafar Abduo possesses a comprehensive set of research skills that have greatly contributed to the field of prosthodontics. His expertise lies in digital dentistry, particularly in developing and optimizing digital workflows for various prosthodontic procedures, including implant and removable prosthodontics. He is proficient in conducting randomized controlled trials and biomechanical evaluations, ensuring the clinical efficacy and durability of dental materials and techniques. Dr. Abduo’s collaboration with industry leaders showcases his ability to bridge academic research with practical applications, enhancing dental treatment outcomes. His supervisory experience, guiding numerous Doctor of Clinical Dentistry and postgraduate students, demonstrates his mentorship skills and commitment to advancing dental education. Additionally, Dr. Abduo has secured multiple research grants, highlighting his capability in securing funding and managing large-scale projects. His strong publication record, with a high h-index and numerous citations, underscores his ability to disseminate research findings effectively and contribute to the broader scientific community.

Awards and Recognition

Dr. Abduo has received several prestigious awards and grants, including the F. A. Kernott Early Career Researcher Award and various grants from the Australian Dental Research Foundation and international sources. His high h-index and citation count further demonstrate his impact and recognition in the field.

Conclusion

Dr. Jaafar Abduo is a highly deserving candidate for the Research for Best Researcher Award. His extensive research contributions, collaborative efforts, and impactful projects in prosthodontics reflect his dedication to advancing dental science. His work has both national and international significance, making him a prominent figure in the field of dental research.

Publications Top Notes

  • “Muscle and joint mechanics during maximum force biting following total temporomandibular joint replacement surgery”
    • Authors: Woodford, S.C., Robinson, D.L., Abduo, J., Lee, P.V.S., Ackland, D.C.
    • Year: 2024
    • Citations: 0
  • “Effect of prefabricated immediate interim prosthesis design and insertion workflow on seating accuracy on implants placed via static computer-assisted implant surgery: A cross-sectional in vitro study”
    • Authors: Abduo, J., Lau, D.
    • Year: 2024
    • Citations: 0
  • “Influence of Implant Adjacent Teeth on the Accuracy of Digital Impression”
    • Authors: Abduo, J., El-Haddad, H.
    • Year: 2024
    • Citations: 0
  • “Seating accuracy of removable partial denture frameworks fabricated by different digital workflows in comparison to conventional workflow”
    • Authors: Korkes, A., Jomaa, J., Kavouris, A., Law, K.H.J., Abduo, J.
    • Year: 2024
    • Citations: 0
  • “Effect of pilot-guided implant placement concept on the accuracy of osteotomy preparation and implant placement”
    • Authors: Sharma, S., Tan, E., Tran, B., Teo, J., Abduo, J.
    • Year: 2024
    • Citations: 0
  • “The Effect of Various Lasers on the Bond Strength Between Orthodontic Brackets and Dental Ceramics: A Systematic Review and Meta-Analysis”
    • Authors: Mosaddad, S.A., Abduo, J., Zakizade, M., Tebyaniyan, H., Hussain, A.
    • Year: 2024
    • Citations: 2
  • “Accuracy of Static Computer-Assisted Implant Placement in Posterior Edentulous Areas with Different Levels of Tooth-Support by Novice Clinicians”
    • Authors: Abduo, J., Lau, D.
    • Year: 2023
    • Citations: 0
  • “Kinematics of the jaw following total temporomandibular joint replacement surgery”
    • Authors: Woodford, S.C., Robinson, D.L., Abduo, J., Lee, P.V.S., Ackland, D.C.
    • Year: 2023
    • Citations: 3
  • “Marginal Accuracy of Monolithic and Veneered Zirconia Crowns Fabricated by Conventional and Digital Workflows”
    • Authors: Abduo, J., Ho, G., Centorame, A., Le, P., Ngo, C.
    • Year: 2023
    • Citations: 3
  • “Measuring tooth movement with treatment using the Dahl principle: An observational study”
    • Authors: Bhai, K., Judge, R., Abduo, J., Palamara, J.
    • Year: 2023
    • Citations: 1

Mariela Gironacci | Molecular Biology | Best Researcher Award

Prof. Mariela Gironacci | Molecular Biology | Best Researcher Award

Professor at University of Buenos Aires , Argentina.

Dr. Mariela Mercedes Gironacci is a distinguished Associate Professor in the Department of Biological Chemistry at the School of Pharmacy and Biochemistry, Buenos Aires University. With a Ph.D. from the University of Buenos Aires and a career spanning over two decades, Dr. Gironacci has made significant contributions to hypertension research. Her work focuses on the Mas receptor and its role in anti-inflammatory and antihypertensive responses. She has led multiple research projects funded by CONICET and other national and international bodies. Dr. Gironacci has received numerous awards, including the Braun Menéndez Award and the Prof. Dr. Luis Moledo Award, recognizing her excellence in hypertension research. She is an active member of professional societies, serves on editorial boards, and has delivered invited lectures globally. Her research impact is evident in her extensive publications and her leadership in advancing our understanding of the renin-angiotensin system.

Profile
Education

Dr. Mariela Mercedes Gironacci holds a distinguished educational background in the field of pharmacology and biochemistry. She earned her Bachelor’s degree in Pharmacy from the National University of Córdoba, Argentina, in 1988. Building upon this foundation, she pursued advanced studies at the University of Buenos Aires, where she completed her Ph.D. in 1999. Her doctoral research contributed significantly to the understanding of the renin-angiotensin system, particularly in relation to hypertension. Dr. Gironacci’s academic journey reflects a strong commitment to advancing knowledge in her field, laying the groundwork for her subsequent research and professional achievements. Her education has equipped her with the expertise necessary to make substantial contributions to pharmacology and biochemistry, particularly in hypertension and cardiovascular research.

Professional Experience

Dr. Mariela Mercedes Gironacci is an esteemed Associate Professor in the Department of Biological Chemistry at the School of Pharmacy and Biochemistry, Buenos Aires University, where she has served since March 2023. Her academic career began as an Instructor in 1991, progressing to Assistant Professor (1996-2008) and then Associate Professor (2008-2023) before her current role. Concurrently, Dr. Gironacci has been a Principal Investigator at the National Council of Scientific and Technical Research (CONICET) since December 2019. Her research focuses on hypertension and cardiovascular health, particularly the Mas receptor’s role in antihypertensive responses. Her leadership extends to serving on various editorial boards, including Hypertension and the Journal of the Argentinian Society of Hypertension, and she has held significant positions in professional societies, including the Inter-American Society of Hypertension. Her extensive experience in teaching, research, and leadership underscores her significant contributions to the field.

Research Interest

Dr. Mariela Mercedes Gironacci’s research primarily focuses on the role of the renin-angiotensin system (RAS) in cardiovascular health, particularly through the study of angiotensin-(1-7) and its associated Mas receptor. Her work delves into the antihypertensive and cardioprotective properties of angiotensin-(1-7), exploring its interactions with other receptors and its impact on conditions such as hypertension and Alzheimer’s disease. Dr. Gironacci’s research also examines the receptor’s involvement in inflammatory responses and its potential therapeutic targets for hypertension and neurodegenerative disorders. She is engaged in elucidating the mechanisms behind Mas receptor trafficking and its role in regulating blood pressure and cardiac function. Her contributions extend to investigating the biological responses triggered by receptor interactions, aiming to advance the understanding and treatment of hypertension and related cardiovascular diseases.

Research Skills

Dr. Mariela Mercedes Gironacci demonstrates exceptional research skills through her extensive work on the Mas receptor and its role in cardiovascular health. Her expertise encompasses a deep understanding of receptor regulation and trafficking, particularly in relation to antihypertensive responses. Dr. Gironacci has led pioneering studies on the depressor axis of the renin-angiotensin system, focusing on the receptor Mas and its interactions with other receptors. Her ability to design and execute complex research projects is evident in her numerous high-impact publications and successful grant applications. She employs advanced methodologies including receptor heteromerization studies, FRET approaches, and molecular modeling to unravel the mechanisms underlying hypertension and cardiovascular diseases. Additionally, her role as an editor and reviewer for leading journals underscores her commitment to maintaining rigorous research standards and advancing the field of cardiovascular pharmacology.

Awards and Recognition

Dr. Gironacci has received numerous awards for her contributions to hypertension research, including prestigious recognitions such as the Braun Menendez Award, the Luis Moledo Award, and the Prof. Dr. C. Taquini Award. These accolades reflect her excellence in research and her impact on the field. Her recognition extends to both national and international levels, highlighting her standing as a leading researcher in her field.

Conclusion

Dr. Mariela Mercedes Gironacci’s extensive research contributions, impactful projects, and numerous awards position her as a strong candidate for the Best Researcher Award. Her work has advanced scientific understanding of hypertension and related conditions, with significant implications for both clinical practice and public health. Her dedication to research, collaborative efforts, and recognition by prestigious institutions underscore her outstanding achievements in the field.

Publications Top Notes

  1. Circulating angiotensin-(1-7) is decreased in patients with isolated nocturnal hypertension
    • Authors: J. Minetto, M.B. Cuello, F.P. Dominici, W.G. Espeche, M.M. Gironacci
    • Year: 2024
  2. Unraveling the crosstalk between renin-angiotensin system receptors
    • Authors: M.M. Gironacci, E. Bruna-Haupt
    • Year: 2024
  3. Valproate decreases transgenerationally blood pressure by affecting thyrotropin-releasing hormone promoter DNA methylation and gene expression in spontaneously hypertensive rat
    • Authors: M.S. Landa, M.L. Schuman, M. Aisicovich, S.I. García, C.J. Pirola
    • Year: 2024
  4. Cognitive Deficits Found in a Pro-inflammatory State are Independent of ERK1/2 Signaling in the Murine Brain Hippocampus Treated with Shiga Toxin 2 from Enterohemorrhagic Escherichia coli
    • Authors: C. Berdasco, A. Pinto, M.G. Blake, J. Gironacci, J. Goldstein
    • Year: 2023
    • Citations: 1
  5. Effect of age on human ACE2 and ACE2-expressing alveolar type II cells levels
    • Authors: M.G. Silva, N.L. Falcoff, G.R. Corradi, M. Nuñez, M.M. Gironacci
    • Year: 2023
    • Citations: 12
  6. Mechanistic approaching study in COVID-19 patients treated with high doses of vitamin D
    • Authors: M.G. Silva, F. Inserra, J. Mariani, W. Manucha, M.M. Gironacci
    • Year: 2023
    • Citations: 1
  7. Mas receptor endocytosis and signaling in health and disease
    • Authors: N.L. Rukavina Mikusic, M.M. Gironacci
    • Year: 2023
  8. Plasmatic renin-angiotensin system in normotensive and hypertensive patients hospitalized with COVID-19
    • Authors: M.G. Silva, G.R. Corradi, J.I. Pérez Duhalde, W.G. Espeche, M.M. Gironacci
    • Year: 2022
    • Citations: 6
  9. Renin-angiotensin system blockade on angiotensin-converting enzyme 2 and TMPRSS2 in human type II pneumocytes
    • Authors: M.G. Silva, N.L. Falcoff, G.R. Corradi, G.R. Guman, M.M. Gironacci
    • Year: 2022
    • Citations: 4
  10. ACE2 internalization induced by a SARS-CoV-2 recombinant protein is modulated by angiotensin II type 1 and bradykinin 2 receptors
    • Authors: A.E. Portales, E.R. Mustafá, C.I. McCarthy, M. Perelló, J. Raingo
    • Year: 2022
    • Citations: 8

 

Teymoor Ghanbari | Nanogenerators | Best Researcher Award

Prof. Teymoor Ghanbari | Nanogenerators | Best Researcher Award

Faculty Member at Shiraz University , Iran.

Prof. Teymoor Ghanbari is a distinguished Full Professor at Shiraz University, renowned for his extensive contributions to electrical engineering. His research focuses on the design, modeling, and fabrication of electrical systems, including innovative hysteresis motors and fault current limiters. Prof. Ghanbari’s work has had significant geographic impact, improving power systems and energy efficiency both within Iran and internationally. He has published over 100 journal papers, more than 50 conference papers, and holds six patents, reflecting his prolific output and influence. His awards include being ranked among the top 1% of scientists globally by WOS and ESI, and he has been recognized as an outstanding professor in research multiple times. Prof. Ghanbari’s expertise extends to applied research in power system management, with practical projects enhancing reliability and safety. His notable achievements and global recognition highlight his exceptional contributions to the field of electrical engineering.

Profile
Education

Prof. Teymoor Ghanbari’s educational journey reflects his deep commitment to electrical engineering. He earned his PhD in Electrical Engineering from Shiraz University in October 2012. His doctoral dissertation, titled “Initial Management of Transients in Microgrids, Challenges and Strategies,” was supervised by Prof. Ebrahim Farjah, Dr. Haidar Samet, Prof. Mahmud Fotoohi, and Dr. Mohammad Mohammadi. Prior to his PhD, Prof. Ghanbari completed his Master’s degree at Shahrood University of Technology in October 2007, where he focused on the “Analysis of Dynamic Behaviors of Hysteresis Motor Using a Suitable Model,” under the guidance of Prof. Ahmad Darabi. His academic foundation began with a Bachelor’s degree in Electrical Engineering from Sh. Rajaee University, completed in May 1997. This rigorous educational background has laid the groundwork for his innovative contributions to the field of electrical engineering.

Professional Experience

Prof. Teymoor Ghanbari, a Full Professor at Shiraz University, has a distinguished career in electrical engineering, marked by significant contributions to power systems and electrical motor technology. His professional journey began with the invention of several types of hysteresis motors and the development of fault current limiters for AC and DC power systems. He has led projects on power systems components monitoring, transient limiters, and energy efficiency improvements. Notable achievements include designing a battery management system for SOHA satellite and assessing fault ride-through capabilities for PV farms. Prof. Ghanbari’s leadership extends to academic and conference roles, including serving as a scientific chair at major international conferences. His expertise is recognized globally, with multiple awards and a strong publication record, underscoring his impact on both theoretical and applied aspects of electrical engineering.

Research Interest

Prof. Teymoor Ghanbari’s research interests are primarily centered around electrical engineering, focusing on the modeling, design, and fabrication of electrical systems and components. His work encompasses a wide range of areas, including the invention of various hysteresis motors and the development of fault current limiters for both AC and DC power systems. Prof. Ghanbari’s research also delves into power system monitoring, failure detection, and the implementation of advanced protection approaches for electric motors, transformers, and converters. His innovative projects include designing transient limiters, developing battery management systems, and assessing the fault ride-through capabilities of large-scale photovoltaic farms. With a strong emphasis on practical applications and real-world problem-solving, Prof. Ghanbari’s research aims to enhance the reliability, efficiency, and safety of electrical systems and power management technologies.

Research Skills

Prof. Teymoor Ghanbari exhibits exceptional research skills in the field of electrical engineering, showcasing a profound expertise in modeling, design, and fabrication of advanced electrical systems. His skills include the development of innovative hysteresis motors and fault current limiters, demonstrating a strong grasp of complex engineering principles and applications. Prof. Ghanbari excels in applied research, with a notable ability to translate theoretical concepts into practical solutions for power systems management and fault detection. His proficiency extends to designing transient limiters and monitoring systems, reflecting his capability in addressing real-world challenges in energy efficiency and system reliability. Additionally, his extensive publication record and patent portfolio highlight his ability to conduct rigorous research and contribute valuable knowledge to the field. Prof. Ghanbari’s skills are further evidenced by his leadership roles in academic conferences and his mentorship of graduate students, underscoring his commitment to advancing research and fostering innovation.

Parasitology and Infectious Diseases

Prof. Ghanbari’s research does not focus on parasitology or infectious diseases. His expertise is centered around electrical engineering and power systems, with no direct contributions to these fields.

Awards and Recognition

Prof. Ghanbari has received several prestigious awards and recognitions, including being ranked among the top 1% of scientists globally by WOS and ESI. He has also been recognized as an outstanding professor in research at Shiraz University and Fars province. His inclusion in the World’s Top 2% Scientists List by Stanford University and Elsevier further highlights his significant impact in his field.

Conclusion

Prof. Teymoor Ghanbari’s extensive research contributions, applied innovations, and global impact make him a strong candidate for the Best Researcher Award. His work in electrical engineering, particularly in developing advanced power system technologies and fault detection methods, demonstrates his leadership and dedication to advancing the field. His numerous awards and recognitions underscore his exceptional achievements and contributions to the scientific community.

Publications Top Notes

  1. Fault ride through enhancement of large-scale solar plants using distributed converters
    • Authors: S.M.H. Mousavi, T. Ghanbari, E. Farjah, A. Mehraban
    • Year: 2024
  2. Stator winding fault detection of induction motors using fast Fourier transform on rotor slot harmonics and least square analysis of the Park’s vectors
    • Authors: T. Ghanbari, A. Mehraban
    • Year: 2024
  3. AI-Based Control of Storage Capacity in High-Power-Density Energy Storage Systems, Used in Electric Vehicles
    • Authors: A. Mehraban, T. Ghanbari, E. Farjah
    • Year: 2024
    • Citations: 5
  4. Adaptation of Triboelectric Nanogenerators to the Integrated Energy Storages by a Textured Multi-Segment Structure
    • Authors: N. Sharif, T. Ghanbari, Z. Hosseini, K. Shahbazi, A. Mehraban
    • Year: 2024
  5. Integrated Optimal Energy Management and Sizing of Hybrid Battery/Flywheel Energy Storage for Electric Vehicles
    • Authors: A. Mehraban, E. Farjah, T. Ghanbari, L. Garbuio
    • Year: 2023
    • Citations: 4
  6. Application of a Rogowski Coil Sensor for Separating Internal and External Partial Discharge Pulses in Power Transformers
    • Authors: S. Sharifinia, M. Allahbakhshi, T. Ghanbari, H. Pakniat
    • Year: 2023
    • Citations: 2
  7. Fault Detection in DC Microgrid: A Transient Monitoring Function-Based Method
    • Authors: M.A. Jarrahi, H. Samet, T. Ghanbari
    • Year: 2023
    • Citations: 4
  8. A Modular Unipolar/Bipolar High-Voltage Pulse Generator Suitable for High Resistive Load
    • Authors: M. Taherian, S. Roshan, M. Allahbakhshi, E. Farjah, T. Ghanbari
    • Year: 2023
    • Citations: 1
  9. Dynamic Polynomial Models With ARMA Coefficients Used for Modeling the DC Series Arc Fault in Photovoltaic Systems
    • Authors: M. Jalil, H. Samet, T. Ghanbari
    • Year: 2023
    • Citations: 2
  10. Partial shading detection and hotspot prediction in photovoltaic systems based on numerical differentiation and integration of the P − V curves
    • Authors: M. Khodapanah, T. Ghanbari, E. Moshksar, Z. Hosseini
    • Year: 2023
    • Citations: 9

 

 

Tsuksa Nabekura | Immunology and Microbiology | Best Researcher Award

Prof. Tsukasa Nabekura | Immunology and Microbiology | Best Researcher Award

Ph.D. at Aichi Cancer Center Research Institute , Japan.

Dr. Tsukasa Nabekura is a prominent immunologist known for his groundbreaking research on natural killer (NK) cells. Since 2008, he has made significant contributions to understanding NK cell receptors and their roles in immune responses to viral infections, cancer, and tissue injury. His work has led to key insights into NK cell differentiation, function, and memory, as evidenced by his publications in high-impact journals like Immunity and Journal of Experimental Medicine. Dr. Nabekura’s research has global significance, with collaborations spanning institutions such as the University of California, San Francisco, and the University of Tsukuba, Japan. His achievements have been recognized with prestigious awards, including the Young Investigator Award from the Japanese Society of Immunology and the BEST FACULTY MEMBER award. Dr. Nabekura’s research continues to advance the field of immunology, with potential implications for therapeutic strategies in cancer and infectious diseases.

Profile
Education

Dr. Tsukasa Nabekura’s educational background reflects a strong foundation in biological and medical sciences. He completed his Bachelor of Science in Biology in March 2003, followed by a Master of Arts in Medical Science in March 2005, both from the University of Tsukuba, Japan. Dr. Nabekura then pursued a Ph.D. in Medicine at the same institution, graduating in March 2008. His commitment to advancing his expertise continued with postdoctoral research at the University of Tsukuba, where he focused on Immunology and completed his postdoc in October 2011. Further enhancing his qualifications, he undertook an additional postdoctoral fellowship at the University of California, San Francisco, from October 2014. This extensive educational journey equipped Dr. Nabekura with a deep understanding of immunology and cell biology, setting the stage for his influential research on natural killer (NK) cells and their roles in immune responses.

Professional Experience

Dr. Tsukasa Nabekura has built a distinguished career in immunology with a focus on natural killer (NK) cells. After completing his postdoctoral research in immunology at the University of California, San Francisco, he returned to Japan as an Assistant Professor in the Life Science Center of Tsukuba Advanced Research Alliance at the University of Tsukuba. His expertise led him to roles at the Life Science Center for Survival Dynamics and the Division of Immune Response at the Aichi Cancer Center Research Institute. Dr. Nabekura’s professional trajectory reflects a strong commitment to advancing immunological research and understanding NK cell biology. His career is marked by his significant contributions to the field through his research on NK cell function and memory, collaborative efforts with leading scientists, and the recognition he has received through various awards and honors.

Research Interest

Dr. Tsukasa Nabekura’s research interests center on the intricate roles of natural killer (NK) cells in immune responses. Since 2008, his work has delved into how NK receptors and associated molecules influence innate and adaptive immunity against viral infections, cancer, and acute tissue injury. His research has elucidated the pivotal role of DNAX accessory molecule-1 (DNAM-1) in NK cell memory differentiation and its impact on acute graft-versus-host disease. Dr. Nabekura has also investigated how activating receptors enhance NK cell functions and memory during infections. His recent studies focus on the regulatory functions of Themis2 in NK cell memory and antitumor activity. By exploring these aspects, Dr. Nabekura aims to advance our understanding of immune responses and contribute to the development of new therapeutic strategies for treating cancer and viral diseases.

Research Skills

Dr. Tsukasa Nabekura possesses a diverse range of advanced research skills that underscore his expertise in immunology. His proficiency in cellular and molecular immunology is evident from his extensive work on natural killer (NK) cells, including their receptors and associated molecules. He has demonstrated exceptional skills in experimental design and execution, particularly in studying NK cell function during viral infections and cancer. Dr. Nabekura’s expertise extends to cutting-edge techniques in cell biology, including flow cytometry, immunohistochemistry, and cytokine profiling. His ability to collaborate with leading researchers and institutions further highlights his strong skills in cross-disciplinary research and team-based science. Additionally, Dr. Nabekura’s experience in securing research fellowships and grants reflects his competence in research proposal development and project management. His comprehensive approach to studying immune responses and his successful publication record illustrate his high level of research acumen and dedication to advancing scientific knowledge.

Awards and Recognition

Dr. Nabekura has received numerous awards, including the Young Investigator Award from the Japanese Society of Immunology and the BEST FACULTY MEMBER award at the University of Tsukuba. These accolades reflect his outstanding contributions and recognition within the scientific community.

Conclusion

Dr. Tsukasa Nabekura’s exceptional research on NK cells and immune responses demonstrates his profound impact on the field of immunology. His contributions to understanding immune mechanisms, his collaborative efforts, and his recognition through various awards underscore his suitability for the Research for Best Researcher Award. His work continues to advance scientific knowledge and has the potential to influence therapeutic strategies for infectious diseases and cancer.

Publications Top Notes

  • THEMIS2 Impairs Antitumor Activity of NK Cells by Suppressing Activating NK Receptor Signaling
    • Authors: E.A. Deborah, T. Nabekura, K. Shibuya, A. Shibuya
    • Year: 2024
  • Themis2 regulates natural killer cell memory function and formation
    • Authors: T. Nabekura, E.A. Deborah, S. Tahara, M. Muratani, A. Shibuya
    • Year: 2023
    • Citations: 4
  • DNAM-1 Immunoreceptor Protects Mice from Concanavalin A-Induced Acute Liver Injury by Reducing Neutrophil Infiltration
    • Authors: S. Matsuo, T. Nabekura, K. Matsuda, K. Shibuya, A. Shibuya
    • Year: 2023
    • Citations: 1
  • Liver type 1 innate lymphoid cells lacking IL-7 receptor are a native killer cell subset fostered by parenchymal niches
    • Authors: T. Asahi, S. Abe, G. Cui, H. Ohno, K. Ikuta
    • Year: 2023
    • Citations: 4
  • The CD16 and CD32b Fc-gamma receptors regulate antibody-mediated responses in mouse natural killer cells
    • Authors: O.A. Aguilar, M.D.R. Gonzalez-Hinojosa, J.S. Arakawa-Hoyt, T. Nabekura, L.L. Lanier
    • Year: 2023
    • Citations: 8
  • Early reactivation of clustered genes on the inactive X chromosome during somatic cell reprogramming
    • Authors: S. Aizawa, K. Nishimura, G.S. Mondejar, Y. Hayashi, K. Hisatake
    • Year: 2022
    • Citations: 3
  • Erratum: Corrigendum to selective expression of a C-type lectin receptor, Clec12b, on skin mast cells
    • Authors: A. Iijima, K. Kanemaru, Y. Wang, S. Tahara-Hanaoka, A. Shibuya
    • Year: 2021
  • Selective expression of a C-type lectin receptor, Clec12b, on skin mast cells
    • Authors: A. Iijima, K. Kanemaru, Y. Wang, S. Tahara-Hanaoka, A. Shibuya
    • Year: 2021
  • Type 1 innate lymphoid cells: Soldiers at the front line of immunity
    • Authors: T. Nabekura, A. Shibuya
    • Year: 2021
    • Citations: 17
  • ILC1: guardians of the oral mucosa against enemy viruses
    • Authors: T. Nabekura, A. Shibuya
    • Year: 2021
    • Citations: 7

 

 

Binbin Ma | Agricultural and Biological Sciences | Best Researcher Award

Dr. Binbin Ma | Agricultural and Biological Sciences | Best Researcher Award

HHMI/Johns Hopkins University, United States.

Binbin Ma is a distinguished researcher specializing in epigenetic inheritance and stem cell biology. Currently a postdoctoral researcher at Howard Hughes Medical Institute/Johns Hopkins University, his work focuses on the molecular mechanisms underlying histone inheritance and cell fate determination. With a Ph.D. from Shanghai Jiao Tong University and extensive postdoctoral experience at Johns Hopkins University, Ma has made significant contributions to understanding epigenetic regulation. His research has led to high-impact publications in journals like Cell and Nature Communications, and he has been recognized with awards such as the Joseph Li Travel Award. Ma’s work is instrumental in advancing knowledge in cell biology and has potential applications in regenerative medicine. His global research experience, collaborative efforts, and numerous accolades highlight his role as a leading researcher in his field.

Profile

Education🎓

Binbin Ma’s educational journey reflects a robust foundation in stem cell biology and epigenetics. He completed his Ph.D. in Germline Stem Cell Biology at the Bio-X Institute of Shanghai Jiao Tong University in China (2013-2019), where he focused on the isolation, culture, and transplantation of germline stem cells, as well as single-cell RNA sequencing analysis. Prior to this, he earned an M.S. in Clinical Veterinary Medicine with a specialization in Embryo Engineering from North-West A&F University, China (2010-2013), where he gained expertise in mouse embryo manipulation and micromanipulation. Additionally, Binbin Ma broadened his research perspective as a Visiting Student in Stem Cells and Epigenetics at Johns Hopkins University (2015-2017), contributing to his deep understanding of differential histone inheritance patterns. His postdoctoral training at Johns Hopkins University and Howard Hughes Medical Institute further advanced his expertise in epigenetic inheritance in mammalian stem cells.

Professional Experience 🏢

Binbin Ma has built an impressive professional career in the field of stem cell biology and epigenetics. Currently a Postdoctoral Fellow at the Howard Hughes Medical Institute/Johns Hopkins University, Ma investigates epigenetic inheritance in mammalian stem cells, a critical area of research for understanding cell fate determination. Previously, he held a similar position at Johns Hopkins University’s Department of Biology, where he continued his work on epigenetic inheritance under the guidance of Drs. Xin Chen and Haiqing Zhao. Ma earned his Ph.D. from Shanghai Jiao Tong University, focusing on germline stem cell biology. His professional journey includes a visiting student role at Johns Hopkins, where he explored differential histone inheritance patterns. Ma’s early career involved advanced training in clinical veterinary medicine and embryo engineering at North-West A & F University. His diverse and multidisciplinary experience highlights his expertise and dedication to advancing scientific knowledge.

Environmental Health

While Binbin Ma’s research is primarily focused on epigenetics and stem cell biology, it holds potential indirect implications for environmental health. His investigations into histone inheritance and cell fate determination can provide insights into how environmental factors may influence genetic and epigenetic mechanisms. Understanding these interactions is crucial, as environmental exposures can affect cellular processes and contribute to various health outcomes. By elucidating the fundamental principles of cellular regulation and inheritance, Ma’s work could inform studies on how environmental pollutants and stressors impact biological systems. Although his research does not directly target environmental health, the underlying mechanisms explored in his studies have broader applications that could enhance our understanding of how environmental factors influence gene expression and contribute to health and disease.

Research Interests 🔬

Binbin Ma’s research interests are centered around epigenetic inheritance and stem cell biology, with a particular focus on understanding how histone modifications influence cell fate and development. His work delves into the molecular mechanisms underlying asymmetric histone inheritance, which is crucial for maintaining cellular identity and function across generations. Ma investigates these processes using various model organisms, including mice and human stem cells, to elucidate how epigenetic regulation impacts stem cell behavior and differentiation. His research aims to uncover the dynamic interactions between genetic and epigenetic factors in controlling cellular processes, which has implications for regenerative medicine and developmental biology. Through his studies, Ma seeks to bridge fundamental biological concepts with potential therapeutic applications, contributing to advancements in understanding cell biology and developing novel strategies for disease treatment.

Award and Honors

Binbin Ma has earned several prestigious awards and honors throughout his academic career, reflecting his exceptional contributions to research in epigenetics and stem cell biology. Notably, he received the Joseph Li Travel Award at the SCBA 18th International Symposium in Boston in 2022, and the Best Poster Award at the SCBA meeting DC-Baltimore Chapter in 2021. His excellence as a graduate student was recognized with the Excellent Graduate award from Shanghai Jiao Tong University in 2019. Earlier achievements include the Scholarship of Hong Kong Moral Association in 2014 and multiple scholarships during his undergraduate studies at North-West A & F University and South-western University for Nationalities. These honors highlight his significant impact in the field and his commitment to advancing scientific knowledge.

Research Skills

Binbin Ma possesses advanced research skills that underscore his expertise in epigenetics and stem cell biology. His proficiency in designing and conducting complex experiments is demonstrated through his work on asymmetric histone inheritance and dynamic epigenetic regulation. Ma is adept at employing cutting-edge techniques, including single-cell RNA sequencing, to unravel intricate biological processes. His skills in data analysis are evident from his extensive list of high-impact publications, which reflect his ability to interpret and present complex research findings. Furthermore, Ma’s experience with diverse research models and his collaborative approach highlight his versatility and capability in integrating interdisciplinary methods. His commitment to rigorous scientific inquiry and innovation is reinforced by his successful execution of projects funded by prestigious institutions like NIH and Howard Hughes Medical Institute. Overall, Binbin Ma’s research skills are characterized by technical proficiency, analytical expertise, and a collaborative spirit, making him a leading figure in his field.

Conclusion

Binbin Ma’s extensive research experience, significant contributions to the field of epigenetics and stem cell biology, and his collaborative approach make him a strong candidate for the Research for Best Researcher Award. His work not only advances scientific knowledge but also holds potential for broader applications in medicine and biology. His achievements and recognition further underscore his suitability for this prestigious award.

Publications Top Notes 📚
  1. Protocol for Establishing Mouse Embryonic Stem Cells to Study Histone Inheritance Pattern at Single-Cell Resolution
    • Authors: Binbin Ma
    • Year: 2020
  2. Differential Histone Distribution Patterns in Induced Asymmetrically Dividing Mouse Embryonic Stem Cells
    • Authors: Binbin Ma
    • Year: 2020
  3. Progress on the Clinical Applications of Stem Cells for Thin Endometrium
    • Authors: Binbin Ma
    • Year: 2020
  4. Extended culture of day 3 embryos improves live birth rate in in vitro fertilization-embryo transfer
    • Authors: Binbin Ma
    • Year: 2019
  5. Molecular characteristics of early-stage female germ cells revealed by RNA sequencing of low-input cells and analysis of genome-wide DNA methylation
    • Authors: Binbin Ma
    • Year: 2018
  6. Progress on the Clinical Applications of Stem Cells for Premature Ovarian Failure
    • Authors: Binbin Ma
    • Year: 2018
  7. Improvement of pregnancy outcome by extending embryo culture in IVF-ET during clinical application
    • Authors: Binbin Ma
    • Year: 2018
  8. Dosage compensation in the process of inactivation/reactivation during both germ cell development and early embryogenesis in mouse
    • Authors: Binbin Ma
    • Year: 2017
  9. Enhancer of polycomb maintains germline activity and genome integrity in Drosophila testis
    • Authors: Binbin Ma
    • Year: 2017

 

Nosherwan Khaliq | Consumer Behavior | Best Researcher Award

Mr. Nosherwan Khaliq | Consumer Behavior | Best Researcher Award 

Postdoc at Tongji University, China.

Nosherwan Khaliq is a distinguished researcher with a robust background in fintech, cryptocurrency, and risk management. He holds a Ph.D. in Business Administration from Yanshan University and is currently engaged in postdoctoral research at Tongji University. His impactful work is evident in his publications in high-impact journals like Heliyon and Technological Forecasting & Social Change, addressing key issues in fintech adoption and perceived risks. With 88 citations and an h-index of 6, his research significantly influences the academic community. Khaliq’s academic journey is supported by prestigious awards, including the One Belt One Road Full Scholarship and Presidential Scholarship. His diverse skills in languages, leadership, and cultural engagement, coupled with his experience in various professional roles, highlight his comprehensive expertise and dedication. His multifaceted contributions to research and cultural activities make him a standout candidate for the Best Researcher Award.

Profile

Education🎓

Nosherwan Khaliq’s educational journey reflects a strong commitment to academic excellence and interdisciplinary learning. He is currently pursuing postdoctoral research at Tongji University in China, continuing his exploration in the field of business administration. Khaliq earned his Ph.D. in Business Administration from Yanshan University, China, in January 2024, where he focused on fintech and risk management. His academic foundation includes a Master’s degree in Chinese Language (MTCSOL) from Sichuan University, China, completed in 2020, which enhances his proficiency in Chinese and supports his research in cross-cultural contexts. He also holds a Master’s degree in English Literature from Punjab University, Pakistan (2016), and a Bachelor’s degree in Commerce with IT from the same institution (2009). This diverse educational background equips Khaliq with a broad skill set and a multifaceted perspective on his research and teaching endeavors.

Professional Experience 🏢

Mr. Nosherwan Khaliq’s professional experience spans various roles and industries, showcasing his diverse skill set. He began his career as an Assistant Accountant at CMC Pvt Limited from 2010 to 2011, where he honed his financial and organizational skills. Following this, he gained experience as an Accounts Executive Officer at Hotel One during a brief stint in 2011. His career then progressed to the banking sector, where he served as a Client Centre Executive-Service (G9) at Standard Chartered Bank from 2015 to 2016, focusing on client relations and service excellence. In parallel, Mr. Khaliq taught English as a private tutor in Pakistan from 2011 to 2016, demonstrating his commitment to education and language skills. These roles have collectively enhanced his expertise in finance, client services, and education, contributing to his well-rounded professional profile.

Environmental Health

Nosherwan Khaliq’s environmental health research focuses on the intersection of financial technologies and their impact on socio-economic systems. His work in fintech and cryptocurrency, particularly through studies published in high-impact journals like Heliyon and Technological Forecasting & Social Change, addresses critical aspects of financial inclusion and risk management. By exploring the determinants influencing fintech adoption and perceived risks, Khaliq contributes to a better understanding of how emerging financial technologies can affect economic stability and individual well-being. His research supports the development of more inclusive and secure financial systems, which are crucial for fostering equitable economic growth and mitigating risks associated with financial technologies. This alignment with broader socio-environmental health objectives highlights Khaliq’s commitment to advancing knowledge that benefits both individual and community well-being, emphasizing the importance of integrating financial innovation with sustainable development practices.

Research Interests 🔬

Nosherwan Khaliq’s research interests lie at the intersection of financial technology, risk management, and cryptocurrency. His work primarily focuses on understanding the determinants influencing fintech adoption, exploring how perceived transaction costs and risks impact user intentions, and investigating the moderating roles of situational factors. Khaliq has contributed to significant advancements in analyzing consumer behavior towards fintech platforms and cryptocurrencies, providing insights into their acceptance and usage in diverse contexts. His research delves into the complexities of financial decision-making, the impact of mixed-ownership reforms on innovation, and the role of investor attention in corporate performance. By leveraging advanced methodologies such as SEM (Structural Equation Modeling), Khaliq aims to enhance the theoretical and practical understanding of financial technologies, contributing to the development of more efficient and user-friendly financial systems. His work is instrumental in shaping the future of fintech and cryptocurrency landscapes.

Award and Honors

Mr. Nosherwan Khaliq has received numerous prestigious awards and honors throughout his academic and professional career. He was awarded the One Belt One Road Full Scholarship for his master’s degree from Sichuan University and the Presidential Scholarship for his Ph.D. at Yanshan University, reflecting his outstanding academic achievements. He also earned the Hebei Provincial Scholarship for Excellent Performance during his doctoral studies. Khaliq’s dedication to academic excellence is further highlighted by his recognition as “Outstanding Student Cadre” and receiving the “Certificate for Outstanding Student” from Yanshan University. His achievements extend to literary and cultural realms, where he has won awards for Chinese calligraphy, participated in international debate competitions, and earned accolades in various themed contests. These honors not only underscore his academic prowess but also his commitment to cultural exchange and scholarly contributions.

Research Skills

Mr. Nosherwan Khaliq exhibits exceptional research skills that underscore his academic excellence and innovative approach. His expertise in fintech, cryptocurrency, and risk management is demonstrated through his impactful publications in high-impact journals like Heliyon and Technological Forecasting & Social Change. Khaliq’s ability to analyze complex data, understand determinants influencing financial technology adoption, and assess perceived risks showcases his advanced analytical skills. His proficiency in using Structural Equation Modeling (SEM) and other statistical methods highlights his technical expertise. Additionally, his research contributions are complemented by his multilingual capabilities, enabling him to engage with a diverse range of academic and cultural contexts. Khaliq’s ongoing postdoctoral research and his ability to secure significant scholarships further reflect his dedication and innovative approach to research. His skills in time management, teamwork, and leadership further enhance his effectiveness as a researcher and scholar.

 Conclusion

Nosherwan Khaliq’s combination of innovative research, academic achievements, and recognition in both professional and cultural spheres make him a strong candidate for the Best Researcher Award. His impactful research in fintech and cryptocurrency, alongside his significant awards and contributions to academic and cultural activities, underscores his dedication and excellence in his field.

Publications Top Notes 📚
  1. Can mixed-ownership reform drive the green transformation of SOEs?
    • Authors: R. Yuan, C. Li, N. Li, M. A. Khan, X. Sun, N. Khaliq
    • Year: 2021
    • Citations: 35
  2. Cryptocurrency acceptance model to analyze consumers’ usage intention: evidence from Pakistan
    • Authors: C. Li, N. Khaliq, L. Chinove, U. Khaliq, J. Popp, J. Oláh
    • Year: 2023
    • Citations: 15
  3. Perceived transaction cost and its antecedents associated with fintech users’ intention: Evidence from Pakistan
    • Authors: C. Li, N. Khaliq, L. Chinove, U. Khaliq, M. Ullah, Z. Lakner, J. Popp
    • Year: 2023
    • Citations: 13
  4. Investor attention and corporate innovation performance: Evidence from web search volume index of Chinese listed companies
    • Authors: N. Li, C. Li, R. Yuan, M. A. Khan, X. Sun, N. Khaliq
    • Year: 2021
    • Citations: 12
  5. Can retail investors induce corporate green innovation?-Evidence from Baidu Search Index
    • Authors: M. Li, N. Li, M. A. Khan, N. Khaliq, F. U. Rehman
    • Year: 2022
    • Citations: 11
  6. Research on the influence of mixed-ownership reform on exploratory innovation of SOEs: The mediation effect of agency conflict and financing constraint
    • Authors: R. Yuan, C. Li, X. Cao, N. Li, N. Khaliq
    • Year: 2022
    • Citations: 8
  7. Mixed-ownership reform and strategic choice of Chinese state-owned enterprises
    • Authors: R. Yuan, C. Li, X. Sun, N. Khaliq
    • Year: 2023
    • Citations: 5
  8. Consumers’ Perception of Risk Facets Associated With Fintech Use: Evidence From Pakistan
    • Authors: C. Li, N. Khaliq, L. Chinove, U. Khaliq, J. Oláh
    • Year: 2023
    • Citations: 3
  9. Does investors’ site visits improve the capital market pricing efficiency?
    • Authors: N. Li, R. Yuan, M. A. Khan, X. Yang, N. Khaliq, X. Zhang
    • Year: 2023
    • Citations: 1
  10. In quest of perceived risk determinants affecting intention to use fintech: Moderating effects of situational factors
    • Authors: H. Zhao, N. Khaliq
    • Year: 2024

 

Preethinie Punyakumari Jayasekara | Immunology and Microbiology | Best Researcher Award

Mrs. Preethinie Punyakumari Jayasekara | Immunology and Microbiology | Best Researcher Award

PhD student at University of New England, Australia.

Mrs. Preethinie Punyakumari Jayasekara is a distinguished researcher with a strong background in veterinary microbiology and molecular biology. She holds a PhD from the University of Reading, an MPhil from the University of Peradeniya, and a BVSc (Hons) from the University of Sri Lanka. Her professional experience spans roles as a Veterinary Research Officer at the Veterinary Research Institute of Sri Lanka, a Government Veterinary Surgeon, and extensive research periods at notable institutions in Laos and Australia. Her research interests focus on disease diagnosis in livestock, antimicrobial resistance, and microbiological quality testing. Jayasekara has authored numerous publications, including conference proceedings and review papers. Her key skills include designing and executing research methodologies, data analysis, and collaboration with various research entities. Her work has contributed significantly to advancements in animal health and production.

Profile

Education🎓

Mrs. Preethinie Punyakumari Jayasekara holds an impressive educational background in veterinary science and microbiology. She earned her Bachelor of Veterinary Science with Honours (BVSc) from the University of Sri Lanka, where she laid the foundation for her expertise in animal health. Further advancing her knowledge, she pursued a Master of Philosophy (MPhil) in Microbiology at the University of Peradeniya, Sri Lanka, completing her degree in April 2019. Her MPhil research focused on microbiological quality testing of dairy products, specifically curd and yoghurt, aligning with SLS standards. Mrs. Jayasekara’s academic journey culminated with a Doctorate (PhD) from the University of Reading, Australia. Her doctoral studies further honed her skills in molecular biology, significantly contributing to her research capabilities and expertise in diagnosing and treating animal diseases. This robust educational background underpins her distinguished career in veterinary research and microbiology.

Professional Experience 🏢

Mrs. Preethinie Punyakumari Jayasekara has a diverse and accomplished professional background in veterinary science and microbiology. She served as a Veterinary Research Officer in the Molecular Biology Division at the Veterinary Research Institute, Sri Lanka, from July 2018 to September 2021. In this role, she was responsible for establishing molecular techniques for disease diagnosis, conducting research on animal health, and improving laboratory facilities. Her responsibilities also included data analysis, knowledge transfer, and collaboration with external institutes. Prior to this, she worked as a Government Veterinary Surgeon with the Department of Animal Production and Health, Sri Lanka, from December 2015 to July 2018. Her duties involved diagnosing and treating animal diseases, performing post-mortem examinations, and conducting mobile clinics and vaccination programs. Additionally, Mrs. Jayasekara has extensive experience in molecular biology through her work at the National Animal Health Laboratory in Laos and the Elizabeth Macarthur Agricultural Institute in Australia.

Research Interests 🔬

Mrs. Preethinie Punyakumari Jayasekara’s research interests focus on veterinary microbiology and molecular biology. Her work primarily revolves around the application of molecular techniques for disease diagnosis and animal health research. She is particularly interested in utilizing molecular methods to diagnose and manage diseases affecting livestock, such as eye infections and respiratory diseases in goats. Her research also explores the microbiological quality of dairy products and antimicrobial resistance in bacteria from dairy cattle and the farm environment. Mrs. Jayasekara’s expertise includes nucleic acid extraction, PCR assays, and phylogenetic analysis, which she applies to improve animal health and production. She has contributed to the understanding of disease constraints in goat production and has been involved in diagnosing and addressing various animal health issues through advanced microbiological techniques.

Award and Honors

Mrs. Preethinie Punyakumari Jayasekara has earned recognition for her significant contributions to veterinary microbiology and molecular biology. Her work, particularly in diagnosing animal diseases and improving animal health, has been highlighted in various scientific conferences. Notably, she presented at the 9th International Conference on Sustainable Animal Agriculture for Developing Countries (SAADC2023), where she discussed topics such as the causation of pinkeye in Lao goats and the impact of diseases on goat production in Lao PDR. Her research has also been acknowledged in several proceedings and scientific journals. Additionally, she has been instrumental in advancing veterinary research through her role at the Veterinary Research Institute in Sri Lanka, where she established techniques for disease diagnosis and contributed to knowledge transfer programs. Her achievements underscore her dedication to improving animal health and advancing veterinary science.

Research Skills

Mrs. Preethinie Punyakumari Jayasekara possesses extensive research skills, primarily in veterinary microbiology and molecular biology. Her expertise includes sample collection, research planning, and methodology development. She is skilled in designing and selecting primers and probes, performing nucleic acid extraction, and conducting PCR assays. Her proficiency extends to data analysis using tools such as MS Excel, RStudio, Geneious Prime, and Mega10. Jayasekara has practical experience with agarose gel electrophoresis, PCR product purification, and phylogenesis. Additionally, she has demonstrated her ability to diagnose animal diseases and develop research techniques at institutions like the National Animal Health Laboratory in Laos and the Elizabeth Macarthur Agricultural Institute in Australia. Her work also involves collaboration with other research divisions and external organizations, contributing to knowledge transfer and advancing research in animal health and production.

Publications Top Notes 📚

 

Linda Medlin | Toxic Algae | Women Researcher Award

Prof Dr. Linda Medlin | Toxic Algae | Women Researcher Award

Professor at Marine Biological Association of the UK, United Kingdom.

Linda Karen Medlin’s research focuses on the taxonomy, systematics, and molecular genetics of phytoplankton, especially diatoms. She explores their biodiversity, evolutionary relationships, and ecological roles in marine and freshwater environments. Medlin integrates traditional morphological methods with modern molecular techniques to develop new identification and classification methodologies. Her research aims to understand phytoplankton’s genetic diversity, adaptive strategies, and responses to environmental changes, with implications for environmental monitoring, ecological modeling, and aquatic ecosystem management.

Profile

Education

Linda Karen Medlin earned her Ph.D. in Botany from Texas A&M University in 1983, where she was a member of Phi Kappa Phi. She completed her M.S. in Biology at Texas A&M University in 1977 and received her B.S. in Education with a focus on Biology and French from the University of Texas at Austin in 1970. Her specialized training includes courses in freshwater and marine diatom taxonomy directed by Ruth Patrick, molecular genetics/systematics led by M.L. Sogin, and advanced molecular systematics at the University of Reading. Medlin also participated in international phytoplankton courses and workshops sponsored by organizations such as UNESCO and SCOR. Her educational background and training reflect her extensive expertise in phycology and marine biology.

Professional Experience

Linda Karen Medlin’s professional experience is marked by significant contributions to marine biology and phycology. She is a Senior Scientist at the Alfred Wegener Institute for Polar and Marine Research, where she has been instrumental in research on marine phytoplankton. Prior to this, Medlin was a Research Scientist at the Marine Biological Laboratory in Woods Hole, Massachusetts, focusing on phytoplankton taxonomy and molecular genetics. She has also held positions as a Research Associate at the University of Texas at Austin and as a Lecturer in Biology at Texas A&M University. Medlin’s work includes substantial research on diatom taxonomy and marine ecosystem health, supported by her roles in several international research projects and collaborations. Her career reflects a deep commitment to advancing understanding in marine and freshwater biology through both research and teaching.

Research Focus:

Linda Karen Medlin’s research focuses on the taxonomy, systematics, and molecular genetics of marine and freshwater phytoplankton, particularly diatoms. She is renowned for her work on the diversity and evolutionary relationships of diatom species, employing advanced techniques in molecular biology and genetics to unravel the complexities of phytoplankton classification and phylogeny. Her research also explores the ecological roles of phytoplankton in marine and freshwater ecosystems, including their responses to environmental changes and their impact on biogeochemical cycles. Medlin has significantly contributed to understanding the biodiversity and distribution patterns of these microorganisms, enhancing knowledge of their ecological significance and potential applications in monitoring environmental health. Her work integrates field studies, laboratory experiments, and computational analyses, aiming to bridge gaps between taxonomy, ecology, and evolutionary biology in the study of phytoplankton.

Award and Honors

Linda Karen Medlin has been recognized with several prestigious awards and honors throughout her distinguished career. She received the “Diatom Research Excellence Award” from the International Society for Diatom Research, acknowledging her significant contributions to diatom taxonomy and systematics. Medlin was also honored with the “Outstanding Researcher Award” by her home institution for her innovative research on phytoplankton diversity and molecular genetics. In addition, she has been a recipient of the “Excellence in Marine Science Award” from the Marine Biological Association for her impactful work on marine phytoplankton and their ecological roles. Her achievements in advancing the understanding of phytoplankton biodiversity and environmental interactions have earned her international recognition and respect within the scientific community. These honors highlight her dedication to advancing the field of phytoplankton research and her contributions to marine and freshwater ecology.

Research Interest

Linda Karen Medlin’s research interests are centered on the taxonomy, systematics, and molecular genetics of phytoplankton, with a particular focus on diatoms. Her work explores the biodiversity and evolutionary relationships of diatoms, contributing to a deeper understanding of their ecological roles in marine and freshwater environments. Medlin is also interested in the application of molecular techniques to elucidate the complex interactions between phytoplankton communities and their environments. Her research extends to the development of new methodologies for the identification and classification of phytoplankton species, integrating traditional morphological approaches with modern molecular tools. By investigating the genetic diversity and adaptive strategies of phytoplankton, Medlin aims to enhance our knowledge of their responses to environmental changes and their roles in global biogeochemical cycles. Her work has significant implications for environmental monitoring, ecological modeling, and the management of aquatic ecosystems.

Publication Top Notes
  1. “A biosensor monitoring approach for toxic algae: Construction of calibration curves to infer cell numbers in field material”
    • Authors: Linda K. Medlin, M. García-Portela, A.E. Rossignoli, B. Reguera
    • Year: 2024
    • Journal: Harmful Algae
    • Volume: 138
    • Article ID: 102697
  2. “Mapping Selected Emergent Marine Toxin-Producing Organisms Using Historical Samples with Two Methods (Biosensors and Real-Time PCR): A Comparison of Resolution”
    • Authors: G. Mengs, R.F. Stern, J.L. Clarke, M. Faith, Linda K. Medlin
    • Year: 2024
    • Journal: Applied Microbiology
    • Volume: 4(1)
    • Pages: 312–328
  3. “Biodiversity of Harmful Marine Algae”
    • Authors: Linda K. Medlin, A.D. Cembella
    • Year: 2024
    • Book: Encyclopedia of Biodiversity, Third Edition: Volume 1-7
    • Pages: V2-886–V2-901
  4. “Complex Plastids and the Evolution of the Marine Phytoplankton”
    • Authors: A. Gruber, Linda K. Medlin
    • Year: 2023
    • Journal: Journal of Marine Science and Engineering
    • Volume: 11(10)
    • Article ID: 1903
  5. “A Review of the Dinoflagellates and Their Evolution from Fossils to Modern”
    • Authors: J.B. Riding, R.A. Fensome, M.-O. Soyer-Gobillard, Linda K. Medlin
    • Year: 2023
    • Journal: Journal of Marine Science and Engineering
    • Volume: 11(1)
    • Article ID: 1
  6. “Determination of the efficiency of filtration of cultures from microalgae and bacteria using hollow fiber filters”
    • Authors: J. Robla, J. García-Hierro, F.J. Alguacil, G. Mengs, Linda K. Medlin
    • Year: 2021
    • Journal: Environmental Science: Water Research and Technology
    • Volume: 7(7)
    • Pages: 1230–1239
  7. “Local environment shapes adaptation of Phaeocystis antarctica to salinity perturbations: Evidence for physiological resilience”
    • Authors: S. Gäbler-Schwarz, F. Hinz, G.O. Kirst, M. Uttieri, Linda K. Medlin
    • Year: 2021
    • Journal: Journal of Experimental Marine Biology and Ecology
    • Volume: 538
    • Article ID: 151527
  8. “The morphology and phylogeny of the diatom genera Rhizosolenia, Proboscia, Pseudosolenia and Neocalyptrella from Gulf of Thailand and the Andaman Sea, with description of Rhizosolenia loanicola sp. nov., Proboscia siamensis sp. nov. and Probosciales ord. nov.”
    • Authors: A. Boonprakob, N. Lundholm, Linda K. Medlin, Ø. Moestrup
    • Year: 2021
    • Journal: Diatom Research
    • Volume: 36(3)
    • Pages: 143–184
  9. “Advances in the Detection of Toxic Algae Using Electrochemical Biosensors”
    • Authors: Linda K. Medlin, M. Gamella, G. Mengs, S. Campuzano, J.M. Pingarrón
    • Year: 2020
    • Journal: Biosensors
    • Volume: 10(12)
    • Article ID: 207
  10. “Phylogenetic reconstruction of diatoms using a seven-gene dataset, multiple outgroups, and morphological data for a total evidence approach”
    • Authors: Linda K. Medlin, Y. Desdevises
    • Year: 2020
    • Journal: Phycologia
    • Volume: 59(5)
    • Pages: 422–436

 

Yassine Beldjoudi | Physical Chemistry | Best Researcher Award

Prof. Yassine Beldjoudi | Physical Chemistry | Best Researcher Award

Associate Professor of University of Nizwa, Oman.

Prof. Yassine Beldjoudi is a distinguished academic and researcher with expertise in chemistry, materials science, and biomedical research. He holds the position of Associate Professor at the University of Nizwa, Institute of Technology and Applied Science, where he conducts research and contributes to the academic community through teaching and mentorship. Throughout his career, Prof. Beldjoudi has demonstrated a strong commitment to advancing scientific knowledge and innovation. He has a diverse educational background, having obtained his PhD in Chemistry from the University of Windsor, Department of Chemistry and Biochemistry, specializing in materials science and organic synthesis. Prior to his doctoral studies, he pursued an International Masters program in ‘Frontiers in Chemistry’ at the University of Paris Cité, and earned a Bachelor’s degree in Biomedical Sciences from the same institution.

Professional Profiles:

Education

Prof. Yassine Beldjoudi pursued a rigorous academic journey that culminated in a PhD in Chemistry from the University of Windsor, Department of Chemistry and Biochemistry, which he completed between 2012 and 2016. During this time, he focused on materials science and organic synthesis, developing a strong foundation in advanced chemical research. Prior to his doctoral studies, Prof. Beldjoudi undertook an International Masters program titled ‘Frontiers in Chemistry’ at the University of Paris Cité from 2010 to 2012, which provided him with interdisciplinary insights into cutting-edge chemistry topics. He began his higher education with a Bachelor’s degree in Biomedical Sciences at the University of Paris Cité, where he acquired fundamental knowledge in biomedical research, enriching his scientific expertise. Prof. Beldjoudi’s educational trajectory reflects his commitment to academic excellence and his pursuit of interdisciplinary approaches to address complex scientific challenges in chemistry and materials science.

Professional Experience

Prof. Yassine Beldjoudi brings a wealth of professional experience spanning academia and industry in the fields of chemistry, materials science, and biomedical research. Currently serving as an Associate Professor at the University of Nizwa, Institute of Technology and Applied Science, he is actively engaged in conducting research and educating students in chemistry. Prior to this role, Prof. Beldjoudi held positions as a Postdoctoral Associate at Northwestern University, where he collaborated with Nobel Laureate Prof. Sir Fraser Stoddart on cutting-edge chemistry projects. He also served as a Scientist and Head of Research and Development at Nobel Panacea Labs, Inc., overseeing the development of novel soft materials for drug delivery and cosmetic products, and leading patent applications and quality control efforts. Earlier in his career, Prof. Beldjoudi conducted impactful research as a Postdoctoral Associate at Northwestern University and a Postdoctoral Research Associate at the University of Windsor, focusing on materials synthesis, supramolecular chemistry, and the development of functional materials with practical applications in various industries. His diverse professional background underscores his expertise in research project management, product development, and scientific innovation. Prof. Beldjoudi’s contributions to academia and industry have been marked by leadership, creativity, and a commitment to advancing scientific knowledge and technological innovation.

Research Interest

Prof. Yassine Beldjoudi’s research interests span across organic and inorganic synthesis, supramolecular chemistry, physical chemistry, biomedical sciences, and materials sciences. His investigations involve developing novel synthetic methods to create organic and inorganic compounds with unique properties and applications. In the realm of supramolecular chemistry, Prof. Beldjoudi explores non-covalent interactions and self-assembly processes to engineer functional supramolecular architectures and materials. His studies in physical chemistry delve into the fundamental principles governing chemical and physical properties of molecules and materials. Applying chemical principles to biomedical sciences, Prof. Beldjoudi aims to address challenges in drug delivery systems and biomaterials. Additionally, his work in materials sciences focuses on designing new materials with tailored properties for applications in electronics, photonics, energy storage, and catalysis. Prof. Beldjoudi’s interdisciplinary approach integrates chemistry with other scientific disciplines to advance knowledge and develop innovative solutions with practical implications across various industries, including healthcare, technology, and environmental sustainability.

Award and Honors

Prof. Yassine Beldjoudi has been honored with several prestigious awards and distinctions that recognize his exceptional contributions to the field of chemistry and materials science. He received Research Fellowships from the University Paris Diderot and University Paris Descartes in recognition of his outstanding research achievements during his academic career. Additionally, he was awarded the Ile-de-France Regional Council Scholarship for demonstrating academic excellence and research potential in the fields of chemistry and materials science. These awards highlight Prof. Beldjoudi’s dedication to scientific excellence, innovation, and his significant impact on advancing knowledge in his areas of expertise.

Research Skills

Prof. Yassine Beldjoudi possesses a diverse and comprehensive skill set in research, cultivated through extensive academic training and professional experience in chemistry, materials science, and biomedical research. He is proficient in organic and inorganic synthesis, adept at designing and synthesizing compounds with tailored properties for specific applications. In the field of supramolecular chemistry, Prof. Beldjoudi specializes in studying non-covalent interactions and self-assembly processes to create functional supramolecular architectures and materials. His expertise extends to physical chemistry techniques, where he applies fundamental principles to investigate the chemical and physical properties of molecules and materials.

Publications

  1. Title: Zwitterionic Cyclophane Molecules: Toward Novel Functional Materials
    • Authors: Beldjoudi, Y.
    • Journal: Advanced Functional Materials, 2024
    • Citations: This information is not available at the moment.
  2. Title: Mechanically interlocked pyrene-based photocatalysts
    • Authors: Garci, A., Weber, J.A., Young, R.M., Wasielewski, M.R., Fraser Stoddart, J.
    • Journal: Nature Catalysis, 2022
    • Citations: 18
  3. Title: Polysilicon Microchips Functionalized with Bipyridinium-Based Cyclophanes for a Highly Efficient Cytotoxicity in Cancerous Cells
    • Authors: Limón, D., Hornick, J.E., Cai, K., Pérez-García, L., Stoddart, J.F.
    • Journal: ACS Nano, 2022
    • Citations: 1
  4. Title: Cyclophane-based two-dimensional polymer formed by an interfacial click reaction
    • Authors: Roy, I., Evans, A.M., Das, P.J., Dichtel, W.R., Stoddart, J.F.
    • Journal: Cell Reports Physical Science, 2022
    • Citations: 5
  5. Title: BODIPY-Based Polymers of Intrinsic Microporosity for the Photocatalytic Detoxification of a Chemical Threat
    • Authors: Atilgan, A., Beldjoudi, Y., Yu, J., Farha, O.K., Hupp, J.T.
    • Journal: ACS Applied Materials and Interfaces, 2022
    • Citations: 7
  6. Title: Discrete Open-Shell Tris(bipyridinium radical cationic) Inclusion Complexes in the Solid State
    • Authors: Anamimoghadam, O., Jones, L.O., Cooper, J.A., Schatz, G.C., Stoddart, J.F.
    • Journal: Journal of the American Chemical Society, 2021
    • Citations: 13
  7. Title: Post-synthetically elaborated BODIPY-based porous organic polymers (POPs) for the photochemical detoxification of a sulfur mustard simulant
    • Authors: Atilgan, A., Cetin, M.M., Yu, J., Stoddart, J.F., Hupp, J.T.
    • Journal: Journal of the American Chemical Society, 2020
    • Citations: 83
  8. Title: Host−guest complexation-mediated supramolecular photon upconversion
    • Authors: Roy, I., Garci, A., Beldjoudi, Y., Wasielewski, M.R., Stoddart, J.F.
    • Journal: Journal of the American Chemical Society, 2020
    • Citations: 27
  9. Title: Supramolecular Porous Organic Nanocomposites for Heterogeneous Photocatalysis of a Sulfur Mustard Simulant
    • Authors: Beldjoudi, Y., Atilgan, A., Weber, J.A., Hupp, J.T., Stoddart, J.F.
    • Journal: Advanced Materials, 2020
    • Citations: 24
  10. Title: Mechanical-Bond-Induced Exciplex Fluorescence in an Anthracene-Based Homo[2]catenane
    • Authors: Garci, A., Beldjoudi, Y., Kodaimati, M.S., Weiss, E.A., Stoddart, J.F.
    • Journal: Journal of the American Chemical Society, 2020
    • Citations: 45