Rimeh Ismail | Materials Science | Best Researcher Award

Assoc. Prof. Dr. Rimeh Ismail | Materials Science | Best Researcher Award

Assoc. Prof. Dr. Rimeh Ismail, Xinjiang Technical Institute of Physics and Chemistry, Chinese Academy of Sciences, Ürümqi, China 

Dr. Ismail Rimeh, a Tunisian-born materials scientist, is currently serving as an Associate Professor at the Xinjiang Technical Institute of Physics and Chemistry, Chinese Academy of Sciences, China. She earned her joint Ph.D. from the University of Tunis El Manar and the University of Montpellier in 2020. Following that, she engaged in various postdoctoral and research positions across Czech Republic and Tunisia. Dr. Rimeh’s research expertise spans membrane-based carbon capture, solid oxide electrolysis cells for CO₂ reduction, and catalytic oxidation of VOCs. Her interdisciplinary approach blends electrochemistry, polymer science, and nanomaterials. Recognized for her innovative work in CO₂ electrolysis and wastewater purification, she collaborates on international projects addressing energy and environmental challenges. With numerous publications and projects to her credit, Dr. Rimeh is advancing sustainable solutions through applied material science and engineering.

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Summary for Best Researcher Award Evaluation: ISMAIL RIMEH

Dr. Ismail Rimeh’s credentials strongly align with the criteria for the Research for Best Researcher Award. Her academic journey, starting with a Ph.D. jointly awarded by the University of Tunis El Manar (Tunisia) and the University of Montpellier (France), laid a solid foundation for her diverse career. Since earning her doctorate in 2020, Dr. Rimeh’s research trajectory has spanned prestigious global institutions, such as the Czech Academy of Sciences and the University of Chemistry and Technology in Prague, culminating in her current role as an Associate Professor at the Xinjiang Technical Institute of Physics and Chemistry in China.

Her research expertise, focusing on materials science with an emphasis on energy and environmental science, is groundbreaking. Notably, her contributions to Direct Air Capture (DAC), CO2 electrolysis, and CO2 separation demonstrate her profound impact on pressing global challenges. Dr. Rimeh’s postdoctoral work on the electrochemical reduction of CO2 by Solid Oxide Electrolysis Cells (SOEC) highlights her commitment to addressing climate change and advancing sustainable technologies. Furthermore, her current projects on membrane-based DAC solutions exhibit practical, innovative approaches that could significantly contribute to environmental conservation and energy efficiency.

Education 

Dr. Ismail Rimeh’s academic path in Sciences and Technology reflects both excellence and international collaboration. She earned her Ph.D. jointly from the University of Tunis El Manar (Tunisia) and the University of Montpellier (France) between 2014 and 2020, focusing on catalysis and environmental material science. Prior to that, she pursued a Master's degree (2012–2014) from the University of Tunis El Manar, gaining foundational expertise in advanced chemical technologies. Her Bachelor's degree (2009–2012) was completed at the University of Carthage, Faculty of Science of Bizerte, Tunisia. She began her academic journey with a High School diploma in Experimental Sciences from Jendouba, Tunisia, in 2009. Throughout her academic training, Dr. Rimeh has consistently focused on materials chemistry, surface engineering, and nanotechnology, forming a robust educational base for her impactful research in materials science and environmental innovation.

Professional Experience 

Dr. Ismail Rimeh’s career spans prominent academic and research institutions across Tunisia, France, Czech Republic, and China. Since April 2024, she has been serving as an Associate Professor at the Xinjiang Technical Institute of Physics and Chemistry, where she leads projects on membrane-based Direct Air Capture and CO₂ electrolysis via solid oxide cells. Prior roles include a Postdoctoral Fellowship (2022–2023) at the University of Chemistry and Technology, Prague, where she developed polymer films for adaptive materials. In 2021–2022, she worked as a Research Assistant at the Czech Academy of Science focusing on implantable biosensors. She also participated in the U.S.-funded Innovation Post-Doc Program in Tunisia (2021). Earlier roles include teaching at the University of Jendouba (2017–2018) and a doctoral research internship at the Institute of Charles Gerhardt, France (2015–2017). These cumulative roles demonstrate her interdisciplinary expertise and research versatility in materials innovation.

Awards and Recognition 

Dr. Ismail Rimeh’s contributions have earned her recognition in multiple international scientific communities. She has co-authored numerous high-impact journal publications and contributed significantly to emerging technologies in electrochemical systems, wastewater purification, and direct air capture. Her joint Ph.D. from two prestigious institutions in Tunisia and France underlines her academic excellence. Her postdoctoral appointments in the Czech Republic were awarded through competitive selection based on her proposed work in smart polymers and adaptive materials. Her active participation in the U.S.-funded Innovation Training Program demonstrates her appeal as a globally competent researcher. Furthermore, her recent appointment as Associate Professor at a leading Chinese research institute is a testament to her academic leadership. Dr. Rimeh is frequently invited to contribute to collaborative projects, reflecting her growing reputation in material science, environmental chemistry, and sustainable engineering practices.

Research Skill On Materials Science

Dr. Ismail Rimeh brings a powerful blend of interdisciplinary research skills to the fields of materials science, electrochemistry, polymer synthesis, and environmental technology. Her expertise includes membrane fabrication, CO₂ electrochemical reduction, and direct air capture systems. She has a deep understanding of polymer thin film deposition, supported catalysts, and nanostructured materials for environmental remediation. Her approach integrates experimental chemistry with real-world engineering applications, focusing on sustainability and efficiency. With proficiency in surface characterization techniques (SEM, FTIR, TGA, XRD), catalytic oxidation mechanisms, and adaptive systems chemistry, she contributes to cutting-edge projects aimed at solving energy and pollution crises. Dr. Rimeh’s skills extend into data modeling, experimental design, and dynamic systems adaptation—critical areas in designing next-gen materials for climate-resilient technologies. Her collaborative mindset and multi-national research experience further amplify her impact in global scientific discourse.

   Publication Top Notes

  • Title: Ag/ZrO₂ and Ag/Fe–ZrO₂ catalysts for the low temperature total oxidation of toluene in the presence of water vapor

    • Authors: R. Ismail, J. Arfaoui, Z. Ksibi, A. Ghorbel, G. Delahay

    • Journal: Transition Metal Chemistry, Volume 45, Pages 501–509

    • Citation Count: 15

    • Year: 2020

  • Title: Effect of the iron amount on the physicochemical properties of Fe–ZrO₂ aerogel catalysts for the total oxidation of Toluene in the presence of water vapor

    • Authors: R. Ismail, J. Arfaoui, Z. Ksibi, A. Ghorbel, G. Delahay

    • Journal: Journal of Porous Materials, Volume 27, Pages 1847–1852

    • Citation Count: 13

    • Year: 2020

  • Title: Potentiometric Performance of Ion-Selective Electrodes Based on Polyaniline and Chelating Agents: Detection of Fe²⁺ or Fe³⁺ Ions

    • Authors: R. Ismail, I. Šeděnková, Z. Černochová, I. Romanenko, O. Pop-Georgievski, et al.

    • Journal: Biosensors, Volume 12 (7), Article 446

    • Citation Count: 11

    • Year: 2022

  • Title: Acid-assisted polymerization: the novel synthetic route of sensing layers based on PANI films and chelating agents protected by non-biofouling layer for Fe²⁺ or Fe³⁺ detection

    • Authors: R. Ismail, I. Šeděnková, J. Svoboda, M. Lukešová, Z. Walterová, E. Tomšík

    • Journal: Journal of Materials Chemistry B, Volume 11 (7), Pages 1545–1556

    • Citation Count: 7

    • Year: 2023

  • Title: The promoting effect of Ce on Ag/ZrO₂ catalyst for the total oxidation of toluene into CO₂ in the presence of water vapor

    • Authors: R. Ismail, J. Arfaoui, Z. Ksibi, A. Ghorbel, G. Delahay

    • Journal: Journal of Sol-Gel Science and Technology, Volume 105 (3), Pages 871–880

    • Citation Count: 2

    • Year: 2023

  • Title: Effect of the amount of Ag on the performance of Ag/Ce-ZrO₂ catalyst for the total oxidation of toluene

    • Authors: R. Ismail, J. Arfaoui, Z. Ksibi, A. Ghorbel, G. Delahay

    • Journal: Journal of Chemistry Letters, Pages 186–191

    • Citation Count: 1

    • Year: 2024

  • Title: Invasive plant-derived carbon dots and carbon black co-deposited basalt fiber fabric as an efficient solar interface evaporator for high salinity water purification

    • Authors: Y.L. He, C.H. Zhou, Z. Chen, I. Rimeh, L. Xing, A. Yimingniyazi, A. Parkash, ...

    • Journal: Separation and Purification Technology, Volume 365, Article 132644

    • Citation Count: Not yet cited

    • Year: 2025

  • Title: Highly conductive Cu-deposited continuous basalt fiber for electric power transmission and next-generation telecommunication applications

    • Authors: A. Parkash, R. Ismail, A. Kadier, P.C. Ma

    • Journal: Journal of Materials Science: Materials in Electronics, Volume 36 (11), Pages 1–12

    • Citation Count: Not yet cited

    • Year: 2025

  • Title: A solar-powered electrocoagulation process with a novel CNT/silver nanowire coated basalt fabric cathode for effective oil/water separation: From fundamentals to application

    • Authors: G. Achagri, R. Ismail, A. Kadier, P.C. Ma

    • Journal: Journal of Environmental Management, Volume 375, Article 124289

    • Citation Count: Not yet cited

    • Year: 2025

  • Title: Silver-based catalysts for toluene oxidation

    • Author: R. Ismail

    • Publisher: European University Publishing

    • Citation Count: Not available

    • Year: 2024

Samir Kamel | Materials Science | Best Researcher Award

Prof. Samir Kamel | Materials Science | Best Researcher Award

👤 Prof. Samir Kamel, National Research Center, Egypt

Prof. Samir Kamel Mohamed Elzayati, Ph.D., is an eminent scientist specializing in cellulose chemistry and materials science. As the Head of the Cellulose and Paper Department at the National Research Centre (NRC) in Egypt, he has significantly contributed to research in smart materials, nanocomposites, and sustainable biomaterials. Prof. Elzayati has served as the Vice President of the Chemical Industries Research Division and has over three decades of academic and research excellence. His global collaborations span leading institutions in France, China, and the USA, enriching his work on advanced materials and green technologies. A prolific scholar, Prof. Elzayati has consistently ranked among the top 2% of scientists globally by Stanford University. His commitment to education, scientific innovation, and international collaboration positions him as a leader in materials science and cellulose technology.

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 🌟 Assessment of Suitability for the “Research for Best Researcher Award”

Summary of Suitability
Prof. Samir Kamel Mohamed Elzayati demonstrates an exceptional record of academic and professional achievements that position him as a strong contender for the “Research for Best Researcher Award.” His expertise in cellulose chemistry, biomaterials, and nanocomposites aligns closely with the award’s emphasis on impactful and innovative research. Prof. Elzayati’s prolific contributions include high-impact publications, international collaborations, and supervision of advanced research, which highlight his leadership in his field.

His inclusion on Stanford University’s global list of the top 2% of scientists for four consecutive years underscores his global recognition and scholarly influence. Prof. Elzayati’s leadership roles, such as his tenure as the Head of the Cellulose and Paper Department and Vice President of the Chemical Industries Research Division, further reflect his commitment to advancing scientific research and mentoring future generations.

🎓 Education 

Prof. Elzayati’s academic journey reflects his dedication to chemistry and materials science. He earned his B.Sc. in Chemistry in 1989 from Ain Shams University, Egypt, followed by an M.Sc. in Chemistry in 1994. His doctoral degree, awarded in 1996, focused on advanced chemical processes, laying the foundation for his specialization in cellulose and biomaterials. Prof. Elzayati’s educational background equipped him with expertise in macromolecular chemistry, enabling breakthroughs in smart materials and hydrogels. His passion for education and mentorship has led to supervising M.Sc. and Ph.D. students across Egypt and internationally, fostering the next generation of scientists. Through academic rigor and interdisciplinary collaboration, Prof. Elzayati continues to advance innovations in sustainable and advanced materials.

💼  Professional Experience 

Prof. Elzayati has a distinguished career spanning over 30 years. He currently serves as the Head of the Cellulose and Paper Department at NRC, where he leads cutting-edge research in cellulose chemistry and nanocomposites. Previously, he held the position of Vice President of the Chemical Industries Research Division, overseeing significant advancements in applied chemical research. His international teaching roles include positions at Sabha University and Omar El-Mukhtar University in Libya, as well as the University of Malakand, Pakistan. His global engagements extend to scientific missions in France, China, and the USA, fostering collaborations that drive innovation in sustainable materials. Prof. Elzayati’s dedication to academia, combined with his leadership in applied sciences, has cemented his reputation as a trailblazer in cellulose technology and materials science.

🏅 Awards and Recognition 

Prof. Elzayati’s contributions to materials science have earned him numerous accolades. Among these are the prestigious Al-Shorouk Academy Award for Scientific and Technological Creativity (2023) and the Award for Scientific Excellence in Basic Sciences from NRC (2013). Recognized globally, he has consistently featured on Stanford University’s list of the top 2% of scientists since 2019. His pioneering work in cellulose chemistry earned him the Prof. Fardus Mubark Award for Smart Materials and the Prof. Yehia Fahmy Award for excellence in cellulose, paper, and wood research. These honors highlight his dedication to advancing sustainable materials and his profound impact on scientific innovation.

🌍 Research Skills On Material Science

Prof. Elzayati’s research skills encompass diverse areas in materials science, including cellulose chemistry, biomaterials, nanocomposites, and hydrogels. His expertise extends to developing smart materials with applications in sustainable technologies and sensors. He excels in synthesizing macromolecular structures and engineering advanced materials for renewable and environmentally friendly applications. With proficiency in multidisciplinary methodologies, Prof. Elzayati integrates chemical analysis, polymer science, and material engineering to create innovative solutions. His global collaborations and extensive publication record reflect his ability to translate complex scientific concepts into impactful research, addressing challenges in green chemistry and sustainable development.

📖 Publication Top Notes

  • Pharmaceutical significance of cellulose: A review
    Authors: S. Kamel, N. Ali, K. Jahangir, S.M. Shah, A.A. El-Gendy
    Citations: 551
    Year: 2008
  • Nanotechnology and its applications in lignocellulosic composites, a mini review
    Authors: S. Kamel
    Citations: 329
    Year: 2007
  • Mechanical and antibacterial properties of novel high-performance chitosan/nanocomposite films
    Authors: A.M. Youssef, H. Abou-Yousef, S.M. El-Sayed, S. Kamel
    Citations: 197
    Year: 2015
  • Thermal behaviour and infrared spectroscopy of cellulose carbamates
    Authors: A.A.M.A. Nada, S. Kamel, M. El-Sakhawy
    Citations: 172
    Year: 2000
  • Evaluation of corn husk fibers reinforced recycled low-density polyethylene composites
    Authors: A.M. Youssef, A. El-Gendy, S. Kamel
    Citations: 150
    Year: 2015
  • Infra-red spectroscopic study of lignins
    Authors: A.A.M.A. Nada, M. El-Sakhawy, S.M. Kamel
    Citations: 145
    Year: 1998
  • Recent advances in cellulose-based biosensors for medical diagnosis
    Authors: S. Kamel, T.A. Khattab
    Citations: 137
    Year: 2020
  • Novel method of preparation of tricarboxylic cellulose nanofiber for efficient removal of heavy metal ions from aqueous solution
    Authors: R.E. Abou-Zeid, S. Dacrory, K.A. Ali, S. Kamel
    Citations: 136
    Year: 2018
  • Preparation and application of acrylonitrile-grafted cyanoethyl cellulose for the removal of copper (II) ions
    Authors: S. Kamel, E.M. Hassan, M. El-Sakhawy
    Citations: 111
    Year: 2006
  • Protective role of zinc oxide nanoparticles-based hydrogel against wilt disease of pepper plant
    Authors: A.M. Abdelaziz, S. Dacrory, A.H. Hashem, M.S. Attia, M. Hasanin, H.M. Fouda, …
    Citations: 106
    Year: 2021

Dechao Yu | Materials Science | Best Researcher Award

Prof. Dr. Dechao Yu | Materials Science | Best Researcher Award

👤  Prof. Dr. Dechao Yu, University of Shanghai for Science and Technology, China

Dechao Yu is a professor at the School of Optical-Electrical and Computer Engineering, University of Shanghai for Science and Technology. With a Ph.D. in Materials Science from South China University of Technology, he has worked as a post-doctoral researcher at Rutgers University and Utrecht University. His work focuses on luminescent materials, quantum cutting, and optoelectronic applications. Dechao has published 65 SCI-indexed papers, received 1914 citations (h-index 25), and holds two patents. He is an associate editor and editorial board member for leading journals. His innovative contributions in rare-earth-doped materials have advanced solar energy efficiency and temperature sensing technologies.

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🌟 Evaluation of Dr. Dechao Yu for the Research for Best Researcher Award

Summary of Suitability
Dr. Dechao Yu’s academic and professional accomplishments demonstrate exceptional merit and align well with the criteria for the Research for Best Researcher Award. With a Ph.D. in Materials Science and postdoctoral experiences at renowned institutions like Rutgers University and Utrecht University, Dr. Yu has cultivated a strong foundation in his field. His current role as a professor at the University of Shanghai for Science and Technology highlights his continued dedication to research and academia.

Dr. Yu’s extensive research contributions are evident in his impressive publication record of 65 articles in indexed journals, a total citation count of 1914, and an h-index of 25, reflecting the high impact of his work. His groundbreaking innovations in luminescent materials, specifically his design of efficient NIR quantum cutting materials with quantum efficiencies up to 400%, have significant implications for solar cell technology.

🎓 Education

Dechao Yu completed his Ph.D. in Materials Science in 2014 at South China University of Technology, specializing in multiphoton near-infrared quantum cutting under Prof. Qinyuan Zhang. He further honed his expertise through post-doctoral research at Rutgers University under Prof. Richard E. Riman and Utrecht University under Prof. Andries Meijerink. His research emphasizes quantum efficiency and the optical spectroscopy of rare-earth-doped materials. Dechao’s academic journey reflects a strong foundation in advanced materials science, with a commitment to innovative applications in optoelectronics and photonics.

💼 Professional Experience

Dechao Yu’s professional journey includes significant research appointments at Rutgers University and Utrecht University. At Rutgers, he contributed to experimental designs for the NIH R01 and DOE projects, collaborating with national labs. At Utrecht, he led efforts in NWO CHIPP projects. Now, as a professor in Shanghai, he leads research in rare-earth-doped materials for optoelectronics and biological applications. He has served as session chair at international conferences and holds editorial roles in prestigious journals. His professional accomplishments are marked by impactful collaborations and leadership in cutting-edge research.

🏅 Awards and Recognitions

  • Editorial Roles: Associate Editor (Frontiers in Photonics), Young Editorial Board Member (Chinese Journal of Rare Earth).
  • Conference Roles: Session Chair at International Conference on Luminescence (2022).
  • Research Impact: Total citations: 1914; h-index: 25.
  • Patents: Two patents published on rare-earth-doped materials.
  • Memberships: Senior Member of the Chinese Society of Optical Engineering.
    Dechao Yu’s career showcases exceptional research, leadership, and recognition in materials science and optoelectronics.

🌍  Research Skills On Materials Science 

Dechao Yu specializes in luminescent materials, lanthanide ions, and glass ceramics. His expertise lies in quantum cutting, upconversion, and luminescence thermometry. He designed NIR quantum cutting materials with quantum efficiency of 400%, advancing solar cells’ photo-response. His research extends to temperature sensing using single-ion phosphors, achieving high precision across ultra-wide temperature ranges (30-800 K). Through theoretical and experimental approaches, his work has been published in high-impact journals, showcasing innovative solutions for optoelectronics and energy efficiency.

📖 Publication Top Notes

Title: A systematic approach to achieving high-performance hybrid lighting phosphors with excellent thermal-and photostability
  • Authors: Y. Fang, W. Liu, S. J. Teat, G. Dey, Z. Shen, L. An, D. Yu, L. Wang, D. M. O’Carroll, …
    Journal: Advanced Functional Materials 27 (3), 1603444
    Citations: 153
    Year: 2017
Title: Spectral conversion for solar cell efficiency enhancement using YVO4: Bi3+, Ln3+ (Ln= Dy, Er, Ho, Eu, Sm, and Yb) phosphors
  • Authors: X. Y. Huang, J. X. Wang, D. C. Yu, S. Ye, Q. Y. Zhang, X. W. Sun
    Journal: Journal of Applied Physics 109 (11)
    Citations: 129
    Year: 2011
Title: One ion to catch them all: Targeted high-precision Boltzmann thermometry over a wide temperature range with Gd3+
  • Authors: D. Yu, H. Li, D. Zhang, Q. Zhang, A. Meijerink, M. Suta
    Journal: Light: Science & Applications 10 (1), 236
    Citations: 117
    Year: 2021
Title: A Ho3+-Based Luminescent Thermometer for Sensitive Sensing over a Wide Temperature Range
  • Authors: T. P. van Swieten, D. Yu, T. Yu, S. J. W. Vonk, M. Suta, Q. Zhang, A. Meijerink, …
    Journal: Advanced Optical Materials 9 (1), 2001518
    Citations: 111
    Year: 2021
Title: Multi-photon quantum cutting in Gd2O2S: Tm3+ to enhance the photo-response of solar cells
  • Authors: D. C. Yu, R. Martín-Rodríguez, Q. Y. Zhang, A. Meijerink, F. T. Rabouw
    Journal: Light: Science & Applications 4 (10), e344-e344
    Citations: 110
    Year: 2015
Title: Non-Rare-Earth Na3AlF6:Cr3+ Phosphors for Far-Red Light-Emitting Diodes
  • Authors: D. Yu, Y. Zhou, C. Ma, J. H. Melman, K. M. Baroudi, M. LaCapra, R. E. Riman
    Journal: ACS Applied Electronic Materials 1 (11), 2325-2333
    Citations: 107
    Year: 2019
Title: Enhanced near-infrared quantum cutting in GdBO3: Tb3+, Yb3+ phosphors by Ce3+ codoping
  • Authors: X. Y. Huang, D. C. Yu, Q. Y. Zhang
    Journal: Journal of Applied Physics 106 (11)
    Citations: 105
    Year: 2009
Title: Insights into the energy transfer mechanism in codoped YAG phosphors
  • Authors: D. C. Yu, F. T. Rabouw, W. Q. Boon, T. Kieboom, S. Ye, Q. Y. Zhang, A. Meijerink
    Journal: Physical Review B 90 (16), 165126
    Citations: 103
    Year: 2014
Title: Efficient first-order resonant near-infrared quantum cutting in β-NaYF4: Ho3+, Yb3+
  • Authors: D. C. Yu, X. Y. Huang, S. Ye, Q. Y. Zhang
    Journal: Journal of Alloys and Compounds 509 (41), 9919-9923
    Citations: 67
    Year: 2011
Title: Understanding and tuning blue-to-near-infrared photon cutting by the Tm3+/Yb3+ couple
  • Authors: D. Yu, T. Yu, A. J. van Bunningen, Q. Zhang, A. Meijerink, F. T. Rabouw
    Journal: Light: Science & Applications 9 (1), 107
    Citations: 64
    Year: 2020