Zhao Wang | Materials Science | Best Researcher Award

Dr. Zhao Wang | Materials Science | Best Researcher Award

Technical Institute of Physics and Chemistry, Chinese Academy of Sciences | China

Dr. Zhao Wang is a distinguished researcher in the field of physical chemistry and advanced material science, specializing in the design and fabrication of high-performance materials inspired by biomimicry. His research focuses on impact-resistant glass, bulletproof glass, and advanced adhesion-controlled interface materials, integrating principles of bionic molecular engineering and interfacial optimization. With a strong foundation in chemistry and applied sciences, Dr. Wang has contributed significantly to internationally recognized journals such as Angewandte Chemie International Edition, Advanced Materials, Chemistry – A European Journal, and Science Bulletin. His work is at the forefront of interdisciplinary research, spanning materials chemistry, nanotechnology, biomimetic systems, and functional device applications. He completed his Ph.D. in Physical Chemistry at the Technical Institute of Physics and Chemistry, CAS, and currently serves as a Special Research Assistant at CAS under the mentorship of Academician Lei Jiang. His research projects include the National Postdoctoral Researcher Funding Program and CAS Special Research Assistant Project, aimed at biomimetic materials for healthcare and industrial applications. Recognized with prestigious scholarships and awards, including the Excellent Postdoctoral Talent of CAS, Dr. Wang has emerged as a promising young scientist with the potential to lead global collaborations in material innovation.

Professional Profile

Scopus 

Education

Dr. Zhao Wang’s academic journey reflects excellence and dedication to scientific inquiry. He obtained his Bachelor of Science in Chemistry from Northeast Normal University, where he developed his foundational skills in analytical chemistry, material synthesis, and molecular design under the mentorship of Prof. Shuxia Liu. His outstanding academic performance earned him multiple President Scholarships and National Scholarships, marking him as one of the top students in his cohort. Building upon his undergraduate success, Dr. Wang pursued a Ph.D. in Physical Chemistry at the Technical Institute of Physics and Chemistry (TIPC), Chinese Academy of Sciences. His doctoral research, guided by Prof. Shutao Wang, focused on bionic molecular engineering and advanced adhesion chemistry, resulting in several publications in Q1 journals and the foundation of his expertise in high-performance impact-resistant glass and biomimetic materials. Dr. Wang’s formal education provided him with not only technical expertise but also exposure to interdisciplinary approaches that merge chemistry, physics, and engineering. His academic training was complemented by scholarships such as the Outstanding President Scholarship of CAS and National Scholarship. These achievements highlight his academic brilliance and set the stage for his continuing contributions as a materials chemist and research innovator.

Professional Experience

Dr. Zhao Wang has built a strong professional trajectory through positions that combine cutting-edge research, collaborative innovation, and mentorship. he has been serving as a Special Research Assistant at the Technical Institute of Physics and Chemistry (TIPC), CAS, working under the guidance of Academician Lei Jiang. In this role, he actively engages in research projects funded by national and international agencies, including the CAS Special Research Assistant Project and the National Postdoctoral Researcher Funding Program. His focus lies in biomimetic material design, adhesion chemistry, and device engineering, with applications extending to healthcare diagnostics, energy devices, and protective materials. During his doctoral years, Dr. Wang participated in several collaborative projects supported by the National Natural Science Foundation of China and CAS strategic initiatives, contributing to phase-change material design for organ preservation, bionic wet adhesion systems, and organic semiconductor devices. His involvement in both independent and team-based research demonstrates his versatility as a researcher capable of tackling fundamental science while addressing practical challenges. His professional journey is distinguished by the successful integration of experimental design, project leadership, and international collaboration, resulting in impactful scientific contributions. Through his roles, Dr. Wang has demonstrated not only research expertise but also leadership qualities essential for future academic and industrial advancements.

Research Interests

Dr. Zhao Wang’s research interests are rooted in biomimicry, material design, and interfacial engineering, with a focus on developing next-generation high-performance materials. His primary research area involves the design and fabrication of impact-resistant and bulletproof glass by leveraging bionic molecular engineering and interfacial optimization. These studies aim to enhance durability, transparency, and resistance, addressing global demands for advanced safety materials in defense, transportation, and infrastructure. Beyond glass materials, Dr. Wang explores biomimetic adhesion-controlled interfaces, inspired by marine organisms and natural adhesion systems. His research in wet adhesion interface materials seeks applications in industrial coatings, medical adhesives, and microelectronic devices. Additionally, he has expanded his interests to biomimetic sensors for early disease diagnosis, as part of the National Postdoctoral Researcher Funding Program, focusing on exhaled biomarker detection for healthcare applications. Dr. Wang’s work also bridges semiconductor interface design and energy materials, where he has contributed to strategies for enhancing the performance of organic electronics and phase-change materials for organ preservation. His interdisciplinary approach highlights the convergence of chemistry, biology, and materials engineering, positioning him as a versatile researcher whose contributions address critical challenges in science, technology, and society.

Research Skills

Dr. Zhao Wang has developed a broad range of technical and analytical skills that underpin his success as a researcher in physical chemistry and material science. His expertise in experimental design and troubleshooting allows him to construct innovative material systems while ensuring high reproducibility and precision. He is proficient in advanced data analysis tools, including OriginPro and MATLAB, enabling him to interpret experimental results and model material behavior effectively. His skills extend to scientific writing and grant proposal preparation, where he has contributed to peer-reviewed publications and secured funding for prestigious projects. Dr. Wang’s laboratory skills include nanostructured material synthesis, interfacial engineering, and polymer integration, particularly within biomimetic and semiconductor systems. His ability to merge theory with practical experimentation reflects his innovative research approach. Additionally, Dr. Wang demonstrates strong communication and presentation abilities, being fluent in English for scientific discourse, international collaboration, and conference participation. He is also well-versed in lab safety and compliance, ensuring responsible and ethical research practices. These skills collectively define him as a well-rounded scientist capable of excelling in diverse research environments while mentoring younger researchers and contributing to global knowledge advancement.

Awards and Honors

Dr. Zhao Wang’s academic and research career is distinguished by a series of national and institutional awards that recognize his excellence and contributions. he was honored with the Excellent Postdoctoral Talent of CAS Award, reflecting his outstanding research performance and future potential. During his doctoral studies, he received the Outstanding President Scholarship of CAS and the National Scholarship, both of which are highly competitive and prestigious recognitions within China’s academic system. Earlier in his career, Dr. Wang was awarded the Outstanding Student of University of CAS and the Excellent Poster Award from the Royal Society of Chemistry for his innovative research presentations. He consistently secured merit-based scholarships, including the Second-Class Director Scholarship, Outstanding Graduate Student Award, and multiple President Scholarships from Northeast Normal University. These recognitions underscore his academic brilliance, innovative thinking, and research impact. Collectively, they demonstrate his ability to excel in both academic and professional environments, highlighting his commitment to advancing material science and contributing to international research communities. His awards position him as a promising global researcher with a track record of sustained excellence.

Publication Top Notes

  • Superwetting-Enabled In Situ Silicification for Artificial Silicified Wood — 2025

  • Dynamic-Wetting Liquid Metal Thin Layer Induced via Surface Oxygen-Containing Functional Groups — 2025 — 3 citations

Conclusion

In conclusion, Dr. Zhao Wang represents an emerging leader in physical chemistry and material science, with contributions that bridge fundamental research and practical applications. His work on impact-resistant glass, biomimetic adhesion materials, and biomimetic sensors addresses critical global challenges in security, healthcare, and advanced technologies. Backed by a strong academic foundation, a growing list of Q1 journal publications, and prestigious recognitions such as the Excellent Postdoctoral Talent of CAS, Dr. Wang has demonstrated consistent excellence and innovation. Beyond research, his engagement in national and international collaborations and his role in mentoring early-stage researchers highlight his leadership qualities and dedication to scientific communities. His strong research skills, combined with a forward-looking vision, position him as a candidate who can drive future breakthroughs in material innovation. Dr. Zhao Wang is highly deserving of the Best Researcher Award, as his contributions not only enrich the academic world but also provide tangible benefits to society at large. With his expertise, dedication, and leadership potential, he is poised to emerge as a global authority in biomimetic material engineering and advanced functional materials, contributing significantly to science and humanity.

Rafael Bernardo Carmona-Paredes | Materials Science | Best Researcher Award

Dr. Rafael Bernardo Carmona-Paredes | Materials Science | Best Researcher Award

National Autonomous University of Mexico | Mexico

Dr. Rafael Bernardo Carmona-Paredes is a highly respected academic and researcher specializing in hydraulic engineering, water resources management, and dynamic systems. With a career spanning over four decades, he has contributed extensively to both theoretical and applied aspects of water systems engineering. Currently serving at the Universidad Nacional Autónoma de México (UNAM), Dr. Carmona has dedicated his career to advancing hydraulic transients, pumping systems, aquifer recharge, and optimization of water distribution systems. His strong academic background, combined with innovative research and teaching, has enabled him to influence both national and international projects in water management and infrastructure. He has published widely in prestigious journals indexed in Scopus and JCR, authored book chapters, and developed patents related to hydraulic simulation and optimization. Dr. Carmona is also recognized for mentoring young researchers, guiding graduate students, and collaborating with institutions across Latin America and Europe. His professional excellence is further evident in his leadership roles within engineering associations and his frequent participation in international congresses. With a unique balance of academic rigor, applied engineering expertise, and societal impact, Dr. Carmona continues to be a leading figure in advancing sustainable solutions for global water challenges.

Professional Profile

Scopus Profile

Education

Dr. Rafael Bernardo Carmona-Paredes pursued his academic training entirely at the prestigious Universidad Nacional Autónoma de México (UNAM), where he cultivated a multidisciplinary foundation bridging physics, control engineering, and mechanical engineering. He completed his Bachelor’s degree in Physics, which provided him with a solid understanding of fundamental scientific principles, including fluid dynamics, mechanics, and applied mathematics. Motivated by the challenges of engineering applications, he advanced to earn his Master’s degree in Control Engineering, where he specialized in system modeling, dynamic controls, and mathematical optimization. This phase of study laid the groundwork for his future work in hydraulic systems and dynamic behavior of pipelines and water distribution networks. Building upon his expertise, Dr. Carmona earned his Ph.D. in Mechanical Engineering at UNAM, with a dissertation that focused on mathematical modeling for navigation and port water areas. His doctoral research represented an early integration of computational methods with hydraulic and mechanical engineering, pioneering approaches that remain highly relevant today. This combination of degrees reflects his progression from theoretical sciences to applied engineering, equipping him with the interdisciplinary knowledge essential for addressing complex problems in hydraulic engineering and water resources management.

Professional Experience

Dr. Rafael Bernardo Carmona-Paredes has held an illustrious professional career rooted in both academia and applied research. He has been a professor and researcher at the Faculty of Engineering, Universidad Nacional Autónoma de México (UNAM), where he has significantly contributed to teaching, supervising graduate students, and leading research initiatives. Over the years, he has spearheaded numerous national and international projects related to hydraulic engineering, water distribution systems, and aquifer management. His professional expertise extends beyond teaching into consultancy and applied engineering, where he has collaborated with governmental agencies, private organizations, and research institutions in solving water management challenges. Dr. Carmona has also been actively involved in presenting his work at major international forums such as the International Association for Hydro-Environment Engineering and Research (IAHR) and Latin American Hydraulic Congresses, establishing himself as a global voice in water engineering. He has contributed to the development of simulation models for transient flows, optimization techniques for pumping systems, and innovative strategies for aquifer recharge. His professional experience showcases a seamless blend of academic leadership, practical problem-solving, and active participation in the global engineering community, making him a sought-after expert in his field.

Research Interests

Dr. Rafael Bernardo Carmona-Paredes’ research interests focus on advancing the science and practice of hydraulic engineering, with a special emphasis on addressing water resource challenges. His primary area of interest lies in hydraulic transients, where he explores the dynamic behavior of water flow in pressurized systems and pipelines, including the effects of viscoelastic properties. He is deeply engaged in the study of pumping systems, their energy efficiency, and methods for optimizing their operation to achieve sustainable outcomes. Another significant focus of his research is aquifer recharge and groundwater management, where he integrates hydrological modeling with engineering approaches to enhance water security. Dr. Carmona also investigates reservoir operation policies, developing computational models that help optimize water storage and distribution under varying climatic and demand conditions. His work extends into mathematical modeling and control systems, leveraging his interdisciplinary background in physics and engineering to simulate complex water systems. By combining theoretical models with practical applications, his research provides innovative solutions for urban water distribution, infrastructure resilience, and sustainable resource management. His interests align with global efforts to ensure water sustainability, positioning his contributions as both regionally impactful and internationally relevant.

Research Skills

Dr. Rafael Bernardo Carmona-Paredes possesses a rich skill set that spans theoretical, computational, and applied aspects of hydraulic engineering and water resource systems. His expertise in mathematical modeling and simulation allows him to design complex models of hydraulic transients, aquifer recharge, and pumping systems with high accuracy. He is skilled in control systems engineering, applying advanced optimization methods to improve the performance and efficiency of water distribution networks. His proficiency extends to computational fluid dynamics (CFD), enabling him to analyze fluid behavior under transient and steady-state conditions. Additionally, Dr. Carmona demonstrates strong abilities in reservoir operation modeling, particularly in developing strategies for water conservation and sustainable supply. His technical strengths are complemented by his knowledge of hydrological data analysis, dynamic system modeling, and viscoelastic pipeline behavior. Beyond technical skills, he excels in research communication through scholarly publications, book chapters, and patents, as well as in collaborative skills through partnerships with international universities and engineering institutions. His ability to integrate theoretical rigor with practical applications reflects his comprehensive research capabilities, equipping him to address multidisciplinary challenges in water engineering and contribute to sustainable development goals.

Awards and Honors

Over the course of his career, Dr. Rafael Bernardo Carmona-Paredes has been recognized with numerous academic and professional honors for his contributions to hydraulic engineering and water resource management. His pioneering research has led to over 200 scientific publications in high-impact journals and conferences, many of which are indexed in Scopus and JCR, highlighting his influence in the global academic community. He has also authored book chapters and holds patents in hydraulic simulation systems, showcasing his ability to translate research into practical innovations. Dr. Carmona has been invited to present at international forums, including IAHR and Latin American Hydraulic Congresses, where his work has been acknowledged by peers worldwide. His role as a mentor and educator at UNAM has also earned him recognition within academic circles for shaping future generations of engineers and researchers. In addition to academic achievements, Dr. Carmona’s applied engineering solutions for aquifer management and hydraulic transients have earned him commendations from research and professional organizations. Collectively, these awards and honors reflect not only his scholarly excellence but also his significant impact on sustainable water engineering practices, both regionally and internationally.

Publication Top Notes

  1. Unsteady and Steady Flow Control on Pumping Systems — 1990

  2. Damp trend Grey Model forecasting method for airline industry — 2013

  3. Pressure management in water distribution systems using a self-tuning controller to distribute the available potable water with equality — 2018

  4. Protecting a Pumping Pipeline System from Low Pressure Transients by Using Air Pockets: A Case Study — 2019

  5. A Unified Hydrogeological Conceptual Model of the Mexico Basin Aquifer after a Century of Groundwater Exploitation — 2022

  6. Challenges and Experiences of Managed Aquifer Recharge in the Mexico City Metropolitan Area — 2022

  7. Use of evolutionary computation and guide curves to optimize the operating policies of a reservoir system established to supply drinking water — 2023

  8. Modeling Viscoelastic Behavior of HDPE Pipes Subjected to a Diametral Load Using the Standard Linear Solid Model — 2025

Conclusion

Dr. Rafael Bernardo Carmona-Paredes stands out as a visionary researcher and academic leader in the field of hydraulic engineering and water resource management. His academic journey from physics to mechanical engineering, paired with his practical expertise, has positioned him as a pioneer in developing innovative solutions for water-related challenges. His contributions extend from theoretical models of hydraulic transients to practical strategies for aquifer recharge and water distribution optimization, bridging the gap between science and application. Beyond his research, Dr. Carmona’s dedication to teaching and mentoring reflects his commitment to shaping future engineers, while his collaborations with global institutions highlight his influence beyond national borders. His vast publication record, patents, and recognition at international forums serve as a testament to his academic excellence and societal impact. Moving forward, his continued focus on sustainability, technological innovation, and global collaboration promises to further strengthen his contributions to water security and hydraulic engineering. For his pioneering achievements, leadership, and dedication, Dr. Rafael Bernardo Carmona-Paredes is rightfully considered a leading figure in his field and a deserving candidate for distinguished academic recognition.

Anton Yehorov | Metallurgy | Best Researcher Award

Mr. Anton Yehorov | Metallurgy | Best Researcher Award

IEST AT TU Bergakademie Freiberg, Germany.

Anton Yehorov is a dedicated metallurgist specializing in iron and steel technology, with a particular focus on sustainable and efficient processes in the industry. Currently based in Freiberg, Saxony, Germany, Anton is pursuing his Ph.D. at TU Bergakademie Freiberg. His research interests include refractory recycling, thermophysical properties of steelmaking slags, and decarbonization of steel plant processes. Anton has a strong academic foundation in materials science, combined with practical industry experience, making him a versatile and impactful researcher in the field. He is known for his analytical skills and his ability to work with complex laboratory equipment while adhering to high standards of laboratory safety. With multilingual proficiency in English, German, and Ukrainian, Anton is well-equipped to engage with international research communities. His work has been recognized through awards like the Best Publication Award, showcasing the quality and relevance of his research contributions. Anton’s expertise is complemented by certifications that underline his technical proficiency and his active participation in international forums, emphasizing his commitment to advancing metallurgical research.

Professional Profile

Education:

Anton Yehorov’s academic journey is marked by a focus on materials science and steel technology. He is currently a Ph.D. candidate at TU Bergakademie Freiberg, Germany, where he has been enrolled since January 2021, with an expected completion in 2028. His doctoral research is centered around sustainable processes in metallurgical applications, particularly the recycling of refractory materials, funded by the German Research Foundation (DFG). Prior to this, Anton completed an Engineer’s degree (Dipl.-Ing) in Steel Technology from TU Bergakademie Freiberg between October 2018 and October 2020, gaining in-depth knowledge of advanced metallurgical processes. His foundational education in materials science began with a Bachelor of Science (BS) and a Master of Science (MS) in Materials Science from Prydniprovska State Academy of Civil Engineering and Architecture, Ukraine, from 2014 to 2021. These degrees provided him with a strong theoretical and practical grounding in materials engineering. Anton’s educational background is characterized by a continuous progression towards mastering complex aspects of materials science, preparing him to address key challenges in the iron and steel industry.

Professional Experience:

Anton Yehorov has accumulated valuable experience in both academic research and industry-focused projects. Currently, he serves as a Doctoral Researcher at TU Bergakademie Freiberg, where he has been involved in a research project funded by the German Research Foundation (DFG) since July 2024. This project focuses on refractory recycling, contributing to raw material, energy, and climate efficiency in high-temperature processes, as part of the Research Training Group GRK 2802. Prior to this role, Anton worked as an Associate Researcher from April to June 2024 at the same institution, where he contributed to a Research Fund for Coal & Steel (RFCS) project aimed at decarbonizing reheating furnaces through a modular hybrid technology combining electrification and gas-burning methods. His earlier experience includes a two-year tenure as a Research Assistant at Intocast AG in Krefeld, Germany, where he was involved in research related to refractory materials and steel production processes. Anton’s professional journey demonstrates his commitment to enhancing efficiency and sustainability in the metallurgical industry through both applied and theoretical research.

Research Interests:

Anton Yehorov’s research interests lie at the intersection of materials science, iron and steel technology, and sustainable industrial practices. He is particularly focused on refractory recycling, which involves the efficient reuse of high-temperature materials used in steel production, contributing to energy savings and reducing the environmental footprint of metallurgical processes. Additionally, Anton explores the thermophysical properties of ladle slags, aiming to optimize the interactions between these materials and refractory linings, which is crucial for improving the lifespan and performance of industrial furnaces. Another key area of his research is the decarbonization of steel production processes, including hybrid heating technologies for reheating furnaces that blend electrification with traditional gas-burning methods. Anton’s research contributes to advancing the steel industry’s shift towards more energy-efficient and climate-friendly practices. By combining experimental studies with theoretical analysis, he seeks to develop solutions that not only enhance production efficiency but also align with global sustainability goals in industrial metallurgy.

Research Skills:

Anton Yehorov possesses a diverse set of research skills that are integral to his work in metallurgy and materials science. His analytical skills allow him to conduct detailed studies on the thermophysical properties of materials, enabling a better understanding of their interactions and behavior in high-temperature environments. He is adept at using a variety of laboratory equipment essential for metallurgical research, including devices for measuring material properties and testing the performance of refractory linings. Anton is well-versed in laboratory safety protocols, ensuring a safe and efficient working environment during complex experiments. His skills in data analysis are complemented by a solid understanding of experimental design, allowing him to interpret research findings with accuracy. Additionally, his proficiency in English, German, and Ukrainian facilitates collaboration with international research teams and participation in global scientific forums. Anton’s combination of technical expertise and effective communication makes him a valuable contributor to the field of materials science and industrial research.

Awards and Honors:

Anton Yehorov has received recognition for his contributions to the field of materials science and metallurgy through several awards and honors. Notably, he was awarded the Best Publication Award for his research on the thermophysical properties of ladle slags with different CaO/Al₂O₃ ratios, which has important implications for improving the efficiency of steelmaking processes. His work on the oxidation behavior of MgO-C refractories and the corrosion of refractory materials with ladle slags has also been well-received in academic circles. Anton has participated as a speaker at prestigious international conferences, such as the 18th Biennial Worldwide Congress on Refractories (UNITECR 2023), showcasing his ability to communicate complex research findings to a global audience. Additionally, he holds several certifications, including those related to secondary steelmaking and German language proficiency (DSH). These achievements highlight Anton’s dedication to advancing his field through high-quality research and active engagement with the scientific community. His accolades not only reflect his expertise but also his potential to make further impactful contributions in metallurgy and materials science.

Conclusion:

Anton Yehorov is a highly qualified researcher with expertise in metallurgy, iron and steel technology, and refractory materials. His work on improving energy efficiency and decarbonization in high-temperature industrial processes is both timely and impactful, making him a strong contender for the “Best Researcher Award.” With further focus on interdisciplinary collaborations and leadership roles, he has the potential to make even more significant contributions to the field.

Publication Top Noted

  1. Oxidation Behavior of MgO-C Refractories Containing Metallic Aluminum, Calcium Magnesium Aluminate Aggregates, and Carbores
    • Authors: Yehorov, A., Wei, X., Mazepa, S., Sherstneva, A., Volkova, O.
    • Year: 2024
  2. Corrosion of MgO–C Refractory with Ladle Slags
    • Authors: Wei, X., Yehorov, A., Volkova, O.
    • Year: 2024
  3. Properties of liquid CaO–SiO2 and CaO–SiO2-‘Fe2O3’tot slags measured by a combination of maximum bubble pressure and rotating bob methods
    • Authors: Cheremisina, E., Kovtun, O., Yehorov, A., Volkova, O., Schenk, J.
    • Year: 2023
  4. Influence of V2O5 on the viscosity of heterogeneous basic oxygen furnace CaO-FeO-SiO2-MgO-V2O5-Al2O3-MnO-P2O5 slags
    • Authors: Lehmann, T., Kovtun, O., Yehorov, A., Shyrokykh, T., Volkova, O.
    • Year: 2023
  5. Influence of SiO2-Adding on the Thermophysical Properties and Crystallization Behavior of Ladle Slags
    • Authors: Yehorov, A., Wei, X., Bellé, M.R., Volkova, O.
    • Year: 2023
  6. Thermophysical properties of liquid CaO-SiO2-Al2O3-MgO-TiO2-V2O3 slags
    • Authors: Yehorov, A., Bachmann, B., Wei, X., Bellé, M.R., Volkova, O.
    • Year: 2022
  7. Selenium as a new decopperization approach for steel scrap
    • Authors: Wei, X., Kovtun, O., Yehorov, A., Aneziris, C.G., Volkova, O.
    • Year: 2022
  8. The interaction of carbon-bonded ceramics with Armco iron
    • Authors: Wei, X., Storti, E., Dudczig, S., Aneziris, C.G., Volkova, O.
    • Year: 2022
  9. Phenomenon of Whiskers Formation in Al2O3−C Refractories
    • Authors: Wei, X., Yehorov, A., Storti, E., Aneziris, C.G., Volkova, O.
    • Year: 2022
  10. Interaction between MgO–C-bricks and ladle slag with a 1:1 CaO/Al2O3 ratio and varying SiO2 content
    • Authors: Yehorov, A., Ma, G., Volkova, O.
    • Year: 2021