Tayyebeh Madrakian | Chemistry | Best Researcher Award

Prof. Tayyebeh Madrakian | Chemistry | Best Researcher Award

academic member at Bu-Ali Sina University, Iran

Professor Tayyebeh Madrakian is a distinguished analytical chemist known for her groundbreaking contributions to nanotechnology, biosensors, and environmental chemistry. She is a highly cited researcher recognized globally for her innovative work in analytical and bioanalytical method development, pollutant removal, and drug delivery systems. As a professor at Bu-Ali Sina University, Iran, she has played a pivotal role in mentoring future scientists and advancing cutting-edge research. Her extensive editorial board memberships, leadership in scientific societies, and active role in international research collaborations highlight her influence in the field. With a strong commitment to both fundamental and applied research, she has significantly contributed to the development of novel nanomaterials for environmental and biomedical applications. Through her dedication, she continues to shape the future of analytical chemistry and inspire new generations of researchers.

Professional Profile

Education

Professor Madrakian pursued her B.Sc. in Chemistry from Shiraz University (1989) before completing her M.Sc. in Analytical Chemistry at Bu-Ali Sina University (1996). Her passion for research led her to obtain a Ph.D. in Analytical Chemistry from Razi University in 2000, where she specialized in advanced separation techniques and electrochemical analysis. Her academic journey reflects a strong foundation in chemical analysis, instrumentation, and nanotechnology applications. Throughout her education, she developed expertise in environmental chemistry, sensor development, and solid-phase extraction methods. Her rigorous training equipped her with the skills to pioneer innovative analytical techniques that have since been widely recognized and applied in environmental monitoring, clinical diagnostics, and pharmaceutical sciences. Her strong academic background laid the foundation for an impactful career in research, education, and scientific innovation.

Professional Experience

Professor Madrakian began her academic career as an Assistant Professor at Bu-Ali Sina University in 2000. She was later promoted to Associate Professor in 2005 and Full Professor in 2011, solidifying her expertise in analytical chemistry. Over the years, she has supervised more than 50 graduate students, shaping the next generation of researchers. Her editorial roles in prestigious journals such as Nanochemistry Research and Frontiers in Bioengineering and Biotechnology reflect her standing in the scientific community. Additionally, she serves as a researcher at Farin Behbood Tashkhis Ltd, contributing to the development of rapid test kits for medical diagnostics. As a respected member of the Iranian Chemical Society and the American Chemical Society, she actively collaborates with international researchers and contributes to peer-reviewing articles for leading analytical chemistry journals. Her career is marked by a dedication to scientific advancement and innovation.

Research Interests

Professor Madrakian’s research focuses on developing novel analytical methods for environmental, pharmaceutical, and biomedical applications. Her work spans electrochemical and optical sensors, nanomaterials, pollutant removal, drug delivery, and wastewater treatment. She has made significant advancements in solid-phase extraction techniques and the synthesis of magnetic nanoparticles for chemical and biological sensing. Her studies on targeted drug delivery using smart nanocarriers have contributed to the field of personalized medicine and cancer therapy. Furthermore, her contributions to wastewater treatment and pollutant remediation using advanced nanomaterials have had a substantial impact on environmental sustainability. Through multidisciplinary collaborations, she continues to explore cutting-edge technologies for analytical and bioanalytical applications, pushing the boundaries of innovation in chemistry and nanoscience.

Awards and Honors

Professor Madrakian’s outstanding contributions to science have earned her numerous prestigious awards. She has been recognized as an ISI Highly Cited Researcher (Top 1%) since 2019 and is ranked among the Top 2% of scientists worldwide since 2018. She received the Khwarizmi Youth Award (2019) and was named the Distinguished Analytical Chemist of Iran by the Iranian Chemical Society (2019). Additionally, she was honored at the 2nd National Festival of Women and Science (2019) for her remarkable achievements. In 2022, she was recognized as a Distinguished Professor in Iranian universities, further solidifying her reputation as a leader in the field. She is also a member of the Iranian Federation of Scientific Leaders (2021-2022), demonstrating her influence on the scientific landscape. Her awards highlight her exceptional research impact, dedication to scientific excellence, and leadership in analytical chemistry.

Conclusion

Professor Tayyebeh Madrakian is an exceptional candidate for the Best Researcher Award due to her high-impact research, extensive academic contributions, and recognized global standing. Her expertise in analytical chemistry, nanotechnology, and environmental science has significantly advanced scientific knowledge.

Publications Top Noted

  • Moradi, M., Afkhami, A., Madrakian, T., Moazami, H.R., Tirandaz, A. (2025). Partial hydrothermal sulfidation of electrosynthesized Co-Mn layered-double-hydroxide as an active material for supercapacitor applications. Journal of Power Sources. Citations: 0

  • Nezamoleslami, L., Khorshidian, N., Madrakian, T., Zaim, S.F., Mohammadi, V.G. (2025). Effect of Zataria multiflora essential oil, saffron infusion, and fat content on the formation of polycyclic aromatic hydrocarbons, organoleptic score, and toxic potency of Kebab Koobideh. Journal of Food Composition and Analysis. Citations: 0

  • Ajdari, B., Madrakian, T., Jalali Sarvestani, M.R., Afkhami, A. (2025). Highly sensitive electrochemical determination of agomelatine in biological samples based on Cu nanoparticles/Schiff base network1 modified glassy carbon electrode: DFT and experimental studies. Talanta. Citations: 0

  • Jalali Sarvestani, M.R., Madrakian, T., Tavassoli, A.M., Afkhami, A., Zolfigol, M.A. (2025). Synthesis of a triazine-based COF and its application for the establishment of an electrochemical sensor for the simultaneous determination of Cd²⁺ and Pb²⁺ in edible specimens using Box-Behnken design. Food Chemistry. Citations: 0

  • Moradifar, B., Afkhami, A., Madrakian, T., Jalali Sarvestani, M.R., Khalili, S. (2025). Rapid, simple and highly selective determination of Chromium(III) in aqueous samples by a microfluidic cell coupled to a smartphone-based colorimetric-sensing detector. Journal of the Iranian Chemical Society. Citations: 0

  • Moeinipour, A., Afkhami, A., Madrakian, T. (2025). Stimuli-responsive polymeric film based on hydrogen-bonded organic framework designing as a smart wound dressing. Iranian Polymer Journal (English Edition). Citations: 0

  • Seifi, A., Afkhami, A., Madrakian, T. (2024). Improved MnO₂ based electrode performance arising from step-by-step heat treatment during electrodeposition of MnO₂ for determination of paracetamol, 4-aminophenol, and 4-nitrophenol. Scientific Reports. Citations: 1

  • Khalili, S., Majidi, M., Bahrami, M., Madrakian, T., Afkhami, A. (2024). A portable gas sensor based on In₂O₃@CuO P–N heterojunction connected via Wi-Fi to a smartphone for real-time carbon monoxide determination. Scientific Reports. Citations: 1

  • Jalal, N.R., Madrakian, T., Ahmadi, M., Bahrami, M., Roshanaei, M. (2024). Wireless wearable potentiometric sensor for simultaneous determination of pH, sodium, and potassium in human sweat. Scientific Reports. Citations: 2

  • Vaziri, Y., Asgari, G., Ghorbani-Shahna, F., Shokoohi, R., Seid-Mohammadi, A. (2024). Degradation of 2,4-dinitrotoluene in aqueous solution by dielectric barrier discharge plasma combined with Fe–RGO–BiVO₄ nanocomposite. Scientific Reports. Citations: 2

 

Fuzhou Wang | Chemistry | Best Researcher

Prof. Dr. Fuzhou Wang | Chemistry | Best Researcher Award

Professor at Anhui University, China

Professor Fuzhou Wang is a distinguished researcher and professor at Anhui University, specializing in organometallic and polymer chemistry, with a focus on olefin polymerization and water treatment. He earned his Doctor of Engineering from Hiroshima University and has held key leadership roles, including deputy director of the Chuzhou Research Institute and head of the Polyolefin Industry R&D Team. His groundbreaking work has led to numerous prestigious awards, such as the silver award in the 6th Anhui Province “Internet+” Innovation Competition and recognition as one of the “Most Beautiful Science and Technology Workers” in Hefei. With over 40 high-impact publications and active collaborations with industry leaders like ExxonMobil, he has significantly advanced polymer research. As the founder of Boqiang New Materials, he bridges academia and industry, fostering innovation. His contributions to catalysis, polymerization mechanisms, and sustainable material development position him as a strong candidate for the Best Researcher Award.

Professional Profile 

ORCID Profile

Education

Professor Fuzhou Wang earned his Doctor of Engineering degree from Hiroshima University, Japan, where he specialized in organometallic and polymer chemistry. His academic journey was marked by excellence in catalysis and polymerization research, laying a strong foundation for his future work. During his doctoral studies, he focused on developing advanced catalysts for olefin polymerization, a crucial area in polymer science. His interdisciplinary training in inorganic chemistry, material science, and polymer engineering has allowed him to bridge the gap between fundamental chemistry and industrial applications. His education also involved extensive international collaboration, equipping him with a global perspective on polymer research. With a solid background in theoretical and applied chemistry, Professor Wang has built an outstanding academic profile that continues to impact the field. His expertise in catalyst design and polymer synthesis has propelled him to the forefront of research, fostering innovative advancements in polymeric materials.

Professional Experience

Professor Fuzhou Wang has had a distinguished professional career, contributing extensively to both academia and industry. He currently serves as a professor at Anhui University and holds leadership roles as the deputy director of the Chuzhou Research Institute and the head of the Polyolefin Industry R&D Team. His work focuses on bridging academic research with industrial applications, particularly in polymer chemistry. He has actively collaborated with major industry players such as ExxonMobil, enhancing the commercial viability of his research. In addition to his university roles, he founded Boqiang New Materials, a company dedicated to the development of sustainable polymer technologies. His career has been defined by a commitment to innovation, leading multiple national and provincial research projects. Through his extensive professional engagements, he has significantly contributed to the advancement of polymer science, catalysis, and material engineering, making him a recognized leader in both research and industrial innovation.

Research Interest

Professor Fuzhou Wang’s research interests span organometallic chemistry, catalysis, and polymer engineering, with a particular focus on olefin polymerization and water treatment technologies. His work revolves around the design and synthesis of novel catalysts for efficient and sustainable polymer production. He has made significant contributions to understanding polymerization mechanisms, particularly in the development of metallocene and post-metallocene catalysts for polyolefins. His research also explores functionalized polymer materials for environmental applications, such as advanced water purification systems. By integrating fundamental chemistry with applied engineering, he aims to develop eco-friendly and high-performance materials. His collaborations with industrial partners ensure that his research has real-world applications, impacting sectors such as packaging, automotive, and environmental sustainability. With a strong emphasis on green chemistry and polymer innovation, Professor Wang’s work continues to push the boundaries of material science and catalysis, positioning him as a leading figure in polymer research.

Award and Honor

Professor Fuzhou Wang has received numerous prestigious awards in recognition of his contributions to polymer chemistry and material science. He won the silver award in the 6th Anhui Province “Internet+” Innovation and Entrepreneurship Competition, highlighting his ability to translate research into practical applications. He was also named one of the “Most Beautiful Science and Technology Workers” in Hefei, reflecting his dedication to scientific progress. His achievements have been acknowledged through multiple provincial and national research grants, further solidifying his reputation as a leading researcher. Additionally, his contributions to the field of catalysis and polymerization have been recognized by various academic and industry organizations. His leadership in polymer research has also earned him invitations to speak at international conferences and contribute to high-impact scientific journals. Through his groundbreaking work, Professor Wang has established himself as a highly respected scientist, continuously driving advancements in polymer materials and sustainable chemistry.

Conclusion

Professor Fuzhou Wang is a highly accomplished researcher and professor whose work in polymer chemistry and catalysis has made a significant impact in both academia and industry. His extensive education, professional experience, and research contributions have positioned him as a leader in the field. Through his pioneering studies in olefin polymerization and sustainable materials, he has driven innovation that benefits both scientific communities and industrial applications. His leadership roles and entrepreneurial ventures further showcase his commitment to advancing polymer science and environmental sustainability. Recognized with numerous awards and honors, his influence continues to grow, making him a strong contender for prestigious research accolades. His ability to integrate theoretical research with practical solutions underscores his dedication to scientific excellence. As he continues his work in polymer innovation, Professor Wang remains a key figure in advancing material science, catalysis, and sustainable polymer technology for future generations.

Publications Top Noted

  • Nickel Catalyst With Excellent Thermal Stability for Ethylene Polymerization and Copolymerization
    Authors: Wanlu Tian, Hengchao Guan, Wenbing Wang, Xin Kong, Wenmin Pang, Quan Wang, Fuzhou Wang, Chen Zou
    Year: 2025
    Source: Applied Organometallic Chemistry

  • Preparation of polyethylene elastomers via controlled chain-walking ethylene polymerization for enhanced impact modification of polypropylene
    Authors: Yu Chen, Ning Wang, Di Zhang, Zhiyang Tian, Xin Lu, Pei Li, Muhammad Qasim, Fuzhou Wang
    Year: 2025
    Source: Polymer

  • Steric and temperature effects in unsymmetrical α‐diimine nickel‐catalyzed ethylene and 1‐octene polymerization
    Authors: Jinke Shou, Pei Li, Wanlu Tian, Yue Liu, Shaojie Zhang, Fuzhou Wang, Chen Tan
    Year: 2024
    Source: Applied Organometallic Chemistry

  • Positional heterogenization effect in salicylaldimine nickel catalyzed ethylene polymerization
    Authors: Fan Yu, Yanfeng Gong, Ning Liu, Guoyong Xu, Pei Li, Binyuan Liu, Chao Li, Fuzhou Wang
    Year: 2024
    Source: Journal of Applied Polymer Science

  • Electronic effect regulated ethylene polymerization and copolymerization of phosphorus phenol nickel catalysts
    Authors: Yaping Xie, Feiran Yang, Qing Miao, Ziqiang Zhang, Wenbing Wang, Fuzhou Wang, Chen Zou
    Year: 2024
    Source: Applied Organometallic Chemistry

  • Regulation of α-diimine nickel catalyzed olefin polymerization by remote site modifications
    Authors: Yufei Li, Yu Chen, Pei Li, Pingping Hu, Guoyong Xu, Chao Li, Shaojie Zhang, Fuzhou Wang
    Year: 2024
    Source: Polymer

  • Chain‐walking polymerization of ethylene and 1‐octene with ortho‐phenyl‐based α‐diimine Ni (II) catalysts
    Authors: Jie Wu, Pei Li, Juan Zhang, Zhengquan Dong, Wu Li, Muhammad Sohail Bashir, Yougui Li, Fuzhou Wang
    Year: 2023
    Source: Applied Organometallic Chemistry

  • Facile one-pot strategy to fabricate polyurea-based palladium for flow-through catalytic reduction of harmful hexavalent chromium from water
    Authors: Muhammad Sohail Bashir, Aqsa Safdar, Adnan Ibrahim, Inas A. Ahmed, Syed Shoaib Ahmad Shah, Ahsanullah Unar, Hanadi A. Almukhlifi, Ahmad M. Saeedi, Wang Fuzhou
    Year: 2023
    Source: Inorganic Chemistry Communications

  • Steric and electronic effects in cationic pyridine carboxamidate nickel mediated ethylene polymerization and copolymerization with methyl 10-undecenoate
    Authors: Pei Li, Hongju Liu, Wanlu Tian, Zhanshan Ma, Xiaoyue Wang, Guoyong Xu, Chao Li, Muhammad Qasim, Fuzhou Wang
    Year: 2023
    Source: Polymer

  • Polyethylene Foam
    Authors: Muhammad Sohail Bashir, Muhammad Qasim, Humaira Bashir, Fuzhou Wang
    Year: 2023
    Source: ACS Symposium Series

  • A Multifunctional Biomass Zinc Catalyst for Epoxy-Based Vitrimers and Composites
    Authors: Wen Cai, Yongshuang Huang, Jie Li, Gang Yang, Fuzhou Wang, Guifu Si, Chen Tan
    Year: 2023
    Source: European Polymer Journal

  • Facile strategy to fabricate palladium-based nanoarchitectonics as efficient catalytic converters for water treatment
    Authors: Fuzhou Wang, Muhammad Sohail Bashir, Chengyun Zhou, Chaohai Wang, Mika Sillanpää, Fuzhou Wang
    Year: 2023
    Source: Separation and Purification Technology

  • Systematic study on interfacial polymerization mechanism of toluene diisocyanate and water for the preparation of polyurea microspheres
    Authors: Fuzhou Wang
    Year: 2022
    Source: Inorganic Chemistry Communications