Amit Pondkule | Nanotechnology | Best Academic Researcher Award

Mr. Amit Pondkule | Nanotechnology | Best Academic Researcher Award

Anusaya Institute of Pharmacy | India

Mr. Amit Vilasrao Pondkule is an accomplished academician and pharmacy professional with over 11 years of teaching, administrative, and research experience. He currently serves as the Principal at DKSS’s Anusaya Institute of Pharmacy, where he has led academic development, faculty training, research initiatives, and multidisciplinary collaborations. His expertise spans pharmaceutics, drug delivery systems, pharmaceutical technology, and academic administration. He has authored 55 publications, contributed 6 book chapters, presented research at numerous national and international conferences, and served as a reviewer for reputed journals. His achievements include two published patents and recognition for excellence in reviewing and institutional service. Mr. Pondkule has actively contributed to national educational activities through roles such as Primary Evaluator for AICTE-sponsored Toycathon and Hackathon events. His commitment to research, student mentorship, and quality enhancement in pharmacy education reflects his broader impact on academic growth and healthcare-oriented skill development.

Citation Metrics (Google Scholar)

40
35
30
20
10
0

Documents
46
Citations
16
h-index
2

Documents

Citations

h-index

Featured Publications

Review on ginger: Chemical constituents and biological effects
Journal of Pharmacognosy and Phytochemistry, 2023 • Citations: 9

A Complete Review on Microencapsulation
IJSDR, 2021 • Citations: 3

Review on Techniques of Microencapsulation
Asian Journal of Pharmacy and Technology, 2025 • Citations: 1

Recent Advances in the Biological Activity of Quinazoline
Int. J. Pharm. Chem. Anal., 2023 • Citations: 1

 

Sumana Paul | Nanomaterials | Best Researcher Award

Dr. Sumana Paul | Nanomaterials | Best Researcher Award

Senior Scientist from CSIR-Central Glass and Ceramic Research Institute | Central Glass and Ceramic Research Institute CSIR | India

Dr. Sumana Paul is a Senior Scientist at the Energy Materials and Devices Division of the CSIR–Central Glass and Ceramic Research Institute (CSIR-CGCRI), Kolkata, India. She is an accomplished researcher specializing in energy materials, nanostructured semiconductors, and optoelectronic devices. Her scientific journey reflects a consistent record of academic excellence, innovative research, and professional recognition. Dr. Paul obtained her Ph.D. in Physics from Jadavpur University in collaboration with the Indian Association for the Cultivation of Science (IACS), where she investigated the optical and photophysical properties of nano-structured semiconducting oxides and sulfides. Over the years, she has held prestigious fellowships such as the DST-INSPIRE Fellowship, SERB National Postdoctoral Fellowship, and Institute Postdoctoral Fellowship at IIT Guwahati, which allowed her to expand her expertise in experimental nanoscience and device engineering. Her extensive publication record includes papers in top-tier international journals such as Nature Nanotechnology, Nanoscale, ACS Applied Energy Materials, and Journal of Materials Chemistry C. Dr. Paul’s research has significant implications for sustainable energy harvesting, photocatalysis, sensing technologies, and next-generation optoelectronic applications. Alongside her research contributions, she is actively engaged in mentoring young researchers, participating in international collaborations, and contributing to the advancement of nanomaterials science on both academic and industrial fronts.

Professional Profile

Scopus | Google Scholar

Education

Dr. Sumana Paul’s educational journey exemplifies a steady pursuit of excellence in science. She began her academic foundation at the West Bengal Board of Secondary Education, where she excelled in Madhyamik with a score of 94.6%. She completed her Higher Secondary education under the West Bengal Council of Higher Secondary Education, securing 89% with a strong focus on Physics, Chemistry, and Mathematics. Her academic achievements paved the way for admission to Jadavpur University, one of India’s premier institutions. She earned her B.Sc. in Physics, Chemistry, Mathematics, and Computer Science, followed by an M.Sc. in Physics, with consistently high performance. Building upon this strong foundation, she pursued doctoral research at the Indian Association for the Cultivation of Science (IACS) under Jadavpur University, focusing on “Optical and Photophysical Properties of Nano-Structured Semiconducting Oxides and Sulfides.” Awarded her Ph.D. in Physics under the mentorship of Prof. Subodh Kumar De, she produced impactful research contributing to the understanding of functional nanomaterials. Dr. Paul’s education also included practical exposure through thesis projects, such as her master’s dissertation on nanosized Ni-Zn ferrites. Collectively, her educational background equipped her with deep theoretical knowledge and experimental expertise, enabling her future breakthroughs in materials science.

Professional Experience

Dr. Sumana Paul has cultivated an impressive professional trajectory that bridges fundamental research with applied science. Her research career began with a Master’s Thesis at Jadavpur University, where she investigated nanosized ferrites under the guidance of Dr. Sanjoy Kumar. She then advanced to doctoral research at IACS, where she explored semiconducting oxides and sulfides, producing innovative outcomes that strengthened her foundations in nanoscience. Following her Ph.D., she secured a National Postdoctoral Fellowship at the Indian Institute of Technology Guwahati, where her research expanded into the domain of energy materials and device applications. Her work continued as an Institute Postdoctoral Fellow at IIT Guwahati, where she refined her expertise in nanostructured materials for optoelectronic and photocatalytic systems. Currently, as a Senior Scientist at CSIR-CGCRI, she leads projects in the Energy Materials and Devices Division, contributing to the development of advanced nanostructures for energy harvesting, photodetection, and sustainable applications. Dr. Paul’s professional contributions also include presenting her work at international conferences in India and abroad, collaborating with global researchers, and co-authoring impactful journal articles. Her career path demonstrates a steady rise from academic researcher to an independent scientist recognized for her leadership in advanced materials and nanotechnology.

Research Interests

Dr. Sumana Paul’s research interests span across nanoscience, materials physics, and applied energy technologies. She focuses on the optical, electronic, and photophysical properties of semiconducting oxides, sulfides, and hybrid nanostructures. A central theme of her work is the design and synthesis of functional nanomaterials for applications in sustainable energy harvesting, photocatalysis, sensing, and optoelectronic devices. She has worked extensively on heterostructures, including Bi₂Se₃, WS₂, and oxyselenides, exploring charge transfer dynamics and tailoring material properties for improved performance. Her research also investigates piezoelectric and triboelectric nanogenerators for biomechanical energy harvesting, merging materials science with practical energy solutions. Another important focus is on the development of perovskite-based materials and novel heterojunctions for photodetection and light-harvesting applications. Dr. Paul’s interdisciplinary approach integrates physics, chemistry, and nanotechnology, allowing her to address scientific challenges with real-world relevance. She has collaborated internationally with researchers in Japan and Europe to expand the scope of her investigations. Her interests continue to evolve toward next-generation devices that utilize nanomaterials for renewable energy, environmental remediation, and sensing applications. By combining fundamental research with applied perspectives, Dr. Paul’s work stands at the forefront of materials science and energy research.

Research Skills

Dr. Sumana Paul possesses a diverse and advanced skillset in both experimental and analytical research, enabling her to conduct high-impact work in nanoscience and materials physics. Her expertise includes the synthesis of nanostructured oxides, sulfides, and hybrid materials using chemical and hydrothermal methods. She is proficient in characterizing these materials through techniques such as UV/Vis spectroscopy, photoluminescence, Raman spectroscopy, X-ray diffraction, electron microscopy, and electrochemical analysis. Additionally, she has deep expertise in studying charge transport and interfacial properties in heterostructures, crucial for understanding optoelectronic and photocatalytic systems. Dr. Paul is skilled in integrating nanomaterials into functional devices such as photodetectors, nanogenerators, and energy storage systems, bridging the gap between fundamental material properties and real-world applications. She has also acquired computational knowledge for interpreting experimental outcomes, particularly in studying photophysical mechanisms. Her ability to work across multidisciplinary platforms—physics, chemistry, and materials engineering—makes her a versatile researcher. Furthermore, her skills extend to mentoring students, writing competitive grant proposals, and publishing in reputed journals. Through her technical, analytical, and leadership skills, Dr. Paul has established herself as a well-rounded scientist contributing to both fundamental discoveries and practical innovations.

Awards and Honors

Dr. Sumana Paul’s academic journey has been consistently recognized through numerous awards, fellowships, and scholarships that highlight her research excellence and contributions to science. Early in her career, she was awarded the INSPIRE Scholarship by the Department of Science and Technology (DST), India, which supported her studies. She later qualified for the prestigious CSIR Lectureship (LS), demonstrating her strong academic standing. During her Ph.D., she was honored with the DST-INSPIRE Junior Research Fellowship and subsequently the Senior Research Fellowship, supporting her innovative doctoral work on semiconducting nanostructures. Following her Ph.D., she was awarded the SERB National Postdoctoral Fellowship at IIT Guwahati, where she advanced her expertise in energy and device materials. She further received the Institute Postdoctoral Fellowship at IIT Guwahati, a recognition given to outstanding researchers demonstrating significant potential for leadership in science. Collectively, these awards underscore her scientific impact and contributions at various career stages. Alongside these honors, her active participation in international conferences and collaborations with globally reputed institutions further demonstrate her international research presence. These distinctions collectively position Dr. Paul as a rising leader in nanoscience and materials research.

Publication Top Notes

  • Maximization of photocatalytic activity of Bi2S3/TiO2/Au ternary heterostructures by proper epitaxy formation and plasmonic sensitization — 2017 — 74 citations

  • Control Synthesis of Air‐Stable Morphology Tunable Pb‐Free Cs2SnI6 Perovskite Nanoparticles and Their Photodetection Properties — 2018 — 71 citations

  • Nitrogenated CQD decorated ZnO nanorods towards rapid photodegradation of rhodamine B: A combined experimental and theoretical approach — 2021 — 53 citations

  • Maximizing the photocatalytic and photo response properties of multimodal plasmonic Ag/WO3−x heterostructure nanorods by variation of the Ag size — 2015 — 51 citations

  • Microwave synthesis of molybdenene from MoS2 — 2023 — 48 citations

  • Control Synthesis and Alloying of Ambient Stable Pb-Free Cs3Bi2Br9(1–x)I9x (0 ≤ x ≤ 1) Perovskite Nanocrystals for Photodetector Application — 2020 — 47 citations

  • Shape Controlled Plasmonic Sn Doped CdO Colloidal Nanocrystals: A Synthetic Route to Maximize the Figure of Merit of Transparent Conducting Oxide — 2016 — 44 citations

Conclusion

In conclusion, Dr. Sumana Paul is an accomplished scientist whose career embodies a blend of academic excellence, impactful research, and professional recognition. Her expertise in nanostructured energy materials and optoelectronic systems has resulted in significant contributions to both fundamental science and applied technologies. With over two dozen publications in high-impact journals, including Nature Nanotechnology, ACS Applied Energy Materials, and Nanoscale, her research has advanced global understanding of functional nanomaterials. Her academic achievements, including a Ph.D. from Jadavpur University/IACS and prestigious postdoctoral fellowships, reflect her strong foundation in scientific inquiry. Professionally, she has evolved from a promising doctoral researcher to a Senior Scientist at CSIR-CGCRI, where she leads projects with societal relevance in energy harvesting and sustainable devices. Her awards and fellowships further recognize her excellence and potential for leadership. Looking ahead, Dr. Paul is poised to make transformative contributions to nanoscience through expanded international collaborations, innovative device engineering, and mentorship of the next generation of scientists. Her dedication to advancing materials research and its societal applications makes her a deserving candidate for recognition through awards that honor scientific leadership and innovation.

AKBAR ESMAEILI | Nanotechnology | Best Scholar Award

Prof Dr. AKBAR ESMAEILI | Nanotechnology | Best Scholar Award

IRAN  at Department of Chemical Engineering, North Tehran Branch, Islamic Azad University, P.O. Box 1651153311, Tehran, Iran.

Prof. Dr. Akbar Esmaeili is a distinguished researcher with expertise in chemical engineering and organic chemistry. His research skills encompass the preparation and characterization of nanomaterials, including nanocapsules and nanofibers, using advanced techniques like electrospinning, FTIR, XRD, and SEM. He is adept at biosorption for heavy metal removal and optimizing drug delivery systems. His work also includes studying antimicrobial activities, antioxidant properties, and environmental applications of nanomaterials. Prof. Esmaeili’s proficiency in these areas underscores his significant contributions to materials science and chemical engineering.

Profile

Education🎓

Prof. Dr. Akbar Esmaeili earned his Ph.D. in Organic Chemistry from Islamic Azad University in Tehran, Iran. He also completed his Bachelor’s degree in Chemistry at the same institution. Additionally, he studied at the University of Shahed Beheshti in Tehran. His educational background provides a strong foundation in chemical research and organic synthesis, which he applies in his current role as a professor in the Department of Chemical Engineering at North Tehran Branch, Islamic Azad University.

Professional Experience 🏢

Prof. Dr. Akbar Esmaeili has a diverse professional background, blending academia and industry. Currently, he serves as the Managing Director of PINK WHITE ROSE (Knowledge Enterprise Company) in Tehran, focusing on innovative research in tissue engineering, particularly in developing heart valve scaffolds with biocompatible polymers. His previous academic roles include being a professor at North Tehran Branch, Islamic Azad University, where he has been involved in teaching and research. His work spans several key areas, including the preparation of nanocapsules and nanofibers, with significant contributions to environmental and biomedical applications. Prof. Esmaeili has presented his research at numerous international conferences and has been actively engaged in editorial and reviewing roles for various scientific journals.

Research Interests 🔬

Prof. Dr. Akbar Esmaeili’s research interests are focused on advancing the field of chemical engineering with an emphasis on tissue engineering, biocompatible materials, and nanotechnology. He is particularly interested in developing novel heart valve scaffolds using biocompatible polymers and exploring their applications in cardiovascular medicine. His work includes the design and optimization of nanofiber scaffolds for drug delivery and tissue engineering. Additionally, Prof. Esmaeili investigates the removal of heavy metals and organic pollutants from wastewater using biosorption techniques and nanocomposite materials. His research also extends to the preparation and characterization of nanocapsules for various applications, including environmental and biomedical fields.

Award and Honors

Prof. Dr. Akbar Esmaeili has been recognized for his significant contributions to the field of chemical engineering and organic chemistry. Notably, his name is listed in the Stanford University “Updated Science-Wide Author Databases of Standardized Citation Indicators,” which features the world’s top 2% scientists, acknowledging his impactful research and citations. He has received several awards for his innovative work, including recognition for his patents on nanocapsules and essential oil encapsulation. His contributions are also reflected in his role on the editorial boards of prestigious journals such as the American Journal of Chemical Engineering and the Journal of Developmental Biology and Tissue Engineering. Additionally, he has been honored for his work in developing novel materials and techniques in tissue engineering, which have significant implications for biomedical applications and environmental technology.

Research Skills

Prof. Dr. Akbar Esmaeili possesses a diverse range of research skills, reflecting his extensive experience and expertise in chemical engineering and organic chemistry. He is highly skilled in the preparation and characterization of nanomaterials, including nanocapsules and nanofibers, utilizing advanced techniques such as electrospinning, atomic force microscopy, and scanning electron microscopy. His proficiency extends to the application of infrared spectroscopy (FTIR), X-ray diffraction (XRD), and tensile strength testing for material analysis. Additionally, he excels in biosorption processes for removing heavy metals and organic compounds from aqueous solutions, employing methods like fixed-bed reactors and continuous biosorption systems. His expertise also includes the design and optimization of drug delivery systems, particularly through nanocapsules and polymer-based scaffolds. Prof. Esmaeili’s research skills are further demonstrated by his ability to conduct in-depth studies on antimicrobial activities, antioxidant properties, and environmental applications of nanomaterials.

Publications Top Notes 📚

  1. Article: Construction of a new membrane bed biofilm reactor and yttria-stabilized zirconia for removing heavy metal pollutants
    • Authors: Jahandust, M., Esmaeili, A.
    • Journal: RSC Advances
    • Year: 2024
  2. Article: In situ bio-inspired fabrication of Ag nanoparticles on Matricaria chamomilla extract modified Cu-Al-Zn LDH as a beneficial antimicrobial agent
    • Authors: Soleymani, M., Kabiri-Fard, H., Hekmati, M., Esmaeili, A., Veisi, H.
    • Journal: Inorganic Chemistry Communications
    • Year: 2024
  3. Article: Synthesis and characterization of ZnO quantum dot-functionalized mesoporous nanocarriers for controlled drug delivery
    • Authors: Khateri, M., Esmaeili, A.
    • Journal: Ceramics International
    • Year: 2024
  4. Book Chapter: Preparation and characterization of enzyme nanoparticles
    • Authors: Esmaeili, A., Rahmatabadi, Y.D.
    • Book: Nano-Enzyme Incorporated Particles: Fundamental Concepts, Synthesis and Applications
    • Year: 2024
  5. Book Chapter: Enzyme-based biosensors with nanoparticles as analytical tools
    • Authors: Esmaeili, A.
    • Book: Nano-Enzyme Incorporated Particles: Fundamental Concepts, Synthesis and Applications
    • Year: 2024
  6. Book Chapter: Polyphenols for Antioxidant Application: Biochemistry of Polyphenols
    • Authors: Esmaeili, A.
    • Book: Science and Engineering of Polyphenols: Fundamentals and Industrial Scale Applications
    • Year: 2024
  7. Book Chapter: An overview of smart textiles from natural resources
    • Authors: Esmaeili, A., Mondal, M.I.H.
    • Book: Smart Textiles from Natural Resources
    • Year: 2024
  8. Article: A new method for identifying methadone in urine samples by trapping it in dendrimer
    • Authors: Tahmasebi, M., Esmaeili, A.
    • Journal: Nanomedicine Research Journal
    • Year: 2023
  9. Article: Formation and investigation of the biology of nanocomposite coated with chitosan-modified oleic acid
    • Authors: Mahmoudi, R., Esmaeili, A., Nematollahzadeh, A.
    • Journal: Sustainable Chemistry and Pharmacy
    • Year: 2023
  10. Article: Synthesis of cubosomes containing cerium oxide nanoparticles from Lactobacillus acidophilus loaded with glatiramer acetate and carboxymethylcellulose coating
    • Authors: Salarieh, Z., Esmaeili, A., Pad, M.H.
    • Journal: International Journal of Biological Macromolecules
    • Year: 2023

 

 

Noor Fatima | 2D Nanomaterials | Women Researcher Award

Ms. Noor Fatima | 2D Nanomaterials | Women Researcher Award

Student at National Water Research Center, Egypt.

Fatima is a highly accomplished Materials Engineer with a solid academic background and extensive professional experience. She holds a Master of Science in Materials Engineering from PIEAS and a Bachelor of Science in Materials Engineering from UET, both with outstanding academic achievements. Currently employed by the Government of Pakistan, Fatima applies her expertise to infrastructure projects, showcasing her skills in project management and interdisciplinary collaboration. Her research interests focus on materials science, where she has contributed to the field through publications and practical applications. Fatima’s dedication and exceptional abilities have earned her recognition as a Gold Medalist at PIEAS. With strong research skills and a detail-oriented approach, she continues to excel in her field, making valuable contributions to the advancement of materials engineering.

Professional Profiles:

Education

Fatima holds a Master of Science in Materials Engineering from the Pakistan Institute of Engineering and Applied Sciences (PIEAS), Islamabad, Pakistan, where she graduated in 2023 with a remarkable CGPA of 3.8/4.0. She was recognized as a Gold Medalist for her outstanding academic achievements. Prior to her master’s degree, Fatima completed her Bachelor of Science in Materials Engineering with Honors from the University of Engineering and Technology (UET), Lahore, Pakistan, graduating in 2020 with a CGPA of 3.7/4.0.

Professional Experience

Fatima currently works as a Materials Engineer for the Government of Pakistan, where she applies her expertise in materials engineering to various infrastructure projects. In this role, she collaborates with interdisciplinary teams to design and implement innovative solutions, ensuring timely completion and adherence to quality standards.

Research Interest

Fatima’s research interests lie in the field of materials science, particularly focusing on the practical application of materials engineering in infrastructure development. She is dedicated to exploring innovative solutions to complex engineering challenges and contributing to the advancement of materials science through her work.

Award and Honors

Fatima’s exceptional academic performance earned her the distinction of being a Gold Medalist at PIEAS for her master’s degree in Materials Engineering. This recognition highlights her dedication and excellence in her field of study.

Research Skills

Fatima possesses strong research skills, as evidenced by her publication in the Journal of Molecular Structures, where she contributed to the advancement of materials science. Her attention to detail, effective communication, and ability to collaborate in interdisciplinary teams make her a valuable asset in research projects. Additionally, her experience in project management ensures the successful execution of research initiatives.