Spomenka Kobe | Environmental and Sustainable Materials | Distinguished Scientist Award

Prof. Dr. Spomenka Kobe | Environmental and Sustainable Materials | Distinguished Scientist Award

The Jožef Stefan Institute | Slovenia

Prof. Dr. Spomenka Kobe is a distinguished materials scientist and one of Europe’s leading experts in nanostructured materials, magnetic materials, and sustainable alloy design. Her pioneering research has advanced the scientific understanding and technological innovation in rare-earth magnet technology, nanostructured thin films, and magnetic materials recycling. She played a pivotal role in establishing rare-earth magnet research in Slovenia, leading major national and European research programs on critical raw materials and sustainable magnet production. Her Scopus-indexed research portfolio includes 169 publications, which have collectively received 2,350 citations from 1,949 documents, reflecting an h-index of 22. Her work spans critical areas of magnetism, solid-state physics, thin-film engineering, and microstructural analysis, significantly influencing global research directions in advanced materials science. Prof. Dr. Spomenka Kobe’s scientific leadership is exemplified through her coordination of the FP7 European Project ROMEO (Replacement and Original Magnet Engineering Option) and the International Associated Laboratory PACS2 (Push-Pull AlloyS and Complex Compounds) in collaboration with CNRS, France. She has also been a principal investigator on numerous EU and national R&D projects and an active contributor to international academic and industrial innovation networks. Her applied research achievements include seven patents (four European patents), three innovations, and multiple technology transfers to industrial production, showcasing her ability to translate advanced materials research into practical applications. She has authored several book chapters, delivered numerous invited lectures, and contributed to major international conferences on magnetic and nanostructured materials.

Profiles: Scopus | ResearchGate | LinkedIn

Featured Publications

• Schieren, L., Semsari Parapari, S., Tomše, T., Žužek, K., Šturm, S., Kobe, S., & Burkhardt, C. (2025). Evaluating citric acid as a selective leaching agent to extract Nd₂Fe₁₄B matrix phase from end-of-life magnets. Journal of Rare Earths, 43(7). https://doi.org/10.1016/j.jre.2025.04.020

• Grau, L., Moreno López, R., Kubelka, P., Burkhardt, F., Tomše, T., Kobe, S., & Burkhardt, C. (2024). Effects of thermal demagnetization in air on the microstructure and organic contamination of NdFeB magnets. Materials, 17(22), 5528. https://doi.org/10.3390/ma17225528

• Tomše, T., Burkhardt, F., Krasniqi, L., Ivekovič, A., Kocjan, A., Kobe, S., Podmiljšak, B., Burkhardt, C., Šturm, S., & Žužek Rožman, K. (2024, September). An alternative sintering strategy for anisotropic Nd–Fe–B magnet based on recycled content. International Materials Science and Engineering Congress (MSE 2024).

• Grau, L., Fleissner, P., Kobe, S., & Burkhardt, C. (2024). Processability and separability of commercial anti-corrosion coatings produced by in situ hydrogen-processing of magnetic scrap (HPMS) recycling of NdFeB. Materials, 17(11), 2487. https://doi.org/10.3390/ma17112487

• Tomše, T., Podmiljšak, B., Scherf, L. M., Kessler, R., Kobe, S., Kocjan, A., Šturm, S., & Žužek Rožman, K. (2024). Unravelling the intricacies of micro-nonuniform heating in field-assisted sintering of multiphase metallic microstructures. Journal of Materials Processing Technology. https://doi.org/10.1016/j.jmatprotec.2024.118405

Mohamed Noufal | Chemical Engineering | Best Researcher Award

Prof. Mohamed Noufal | Chemical Engineering | Best Researcher Award

Hampton University | United States

Prof. Mohamed Noufal, Ph.D., is a distinguished chemical engineer and academic leader, serving as Chair of the Department of Chemical Engineering and Director of the Quantum Materials Laboratory at Hampton University, Virginia, USA. He earned his Ph.D. in Environmental Sciences and Engineering from The University of Texas at El Paso (2022), an M.Sc. in Chemistry from Ain Shams University, Egypt (2016), and a B.Sc. in Chemistry from Mansoura University, Egypt (2012). With over eight years of experience in research, teaching, and program development, Prof. Mohamed Noufal has established an internationally recognized portfolio in advanced electrocatalysis, semiconductor interfaces, 2D materials, green hydrogen technologies, and AI-assisted materials discovery. His professional journey includes faculty associate roles at Purdue Fort Wayne’s First Molecule Center, visiting professorships at the University of Pennsylvania and University of Virginia, and leadership of interdisciplinary initiatives in fullerenes and van der Waals heterostructures. He has secured competitive funding from NSF, NASA, DOE, and other agencies, and has mentored numerous graduate and undergraduate researchers advancing in academic and professional roles. Prof. Mohamed Noufal’s recent publications include “Raman fingerprints of spin-phonon coupling and magnetic transition in an organic molecule intercalated Cr₂Ge₂Te₆”, “Unraveling the Cooperative Activity of Hydrophilicity, Conductivity, and Interfacial Active Sites in Alginate‐CNT‐CuO Self‐Standing Electrodes”, and “Cylindrical C96 Fullertubes: A Highly Active Metal‐Free O₂‐Reduction Electrocatalyst”, collectively cited 19 times across 7 Scopus-indexed documents with an h-index of 3. Recognized for his innovation in nanomaterials synthesis, biosensor development, and sustainable energy technologies, Prof. Mohamed Noufal has significantly advanced research, education, and interdisciplinary collaboration in chemical engineering.

Profile: Scopus | Staff Page

Featured Publications

Samanta, S., Iturriaga, H., Mai, T. T., Biacchi, A. J., Islam, R., Hight Walker, A. R., & Noufal, M. (2023). Raman fingerprints of spin-phonon coupling and magnetic transition in an organic molecule intercalated Cr₂Ge₂Te₆. arXiv preprint arXiv:2312.01270.

Noufal, M., et al. (2023). Unraveling the cooperative activity of hydrophilicity, conductivity, and interfacial active sites in alginate‐CNT‐CuO self‐standing electrodes with benchmark-close activity for alkaline water splitting. Advanced Sustainable Systems, 7(12), 2300283.

Bhunia, S., Peña-Duarte, A., Li, H., Li, H., Noufal, M., Saha, P., Addicoat, M. A., Sasaki, K., Strom, T. A., Yacamán, M. J., & Cabrera, C. R. (2023). [2,1,3]-Benzothiadiazole-spaced Co-porphyrin-based covalent organic frameworks for O₂ reduction. ACS Nano, 17(4), 3492–3505.

Noufal, M., et al. (2022). Cylindrical C₉₆ fullertubes: A highly active metal‐free O₂‐reduction electrocatalyst. Angewandte Chemie International Edition, 61(21), e202116727.

Puente Santiago, A. R., Noufal, M., Moreno-Vicente, A., Ahsan, M. A., Cerón, M. R., Yao, Y.-R., Sreenivasan, S. T., Rodriguez-Fortea, A., Poblet, J. M., & Echegoyen, L. (2021). A new class of molecular electrocatalysts for hydrogen evolution: Catalytic activity of M₃N@C₂ₙ (2n = 68, 78, and 80) fullerenes. Journal of the American Chemical Society, 143(16), 6037–6042.

Noufal, M., et al. (2021). Co–Cu bimetallic metal-organic framework catalyst outperforms the Pt/C benchmark for oxygen reduction. Journal of the American Chemical Society, 143(10), 4064–4073.

Noufal, M., et al. (2022). Metal-organic framework in fuel cell technology: Fundamentals and application. In Electrochemical applications of metal-organic frameworks (pp. 135–189). Elsevier.

Masoumeh Bararzadeh Ledari | Environmental Science | Best Researcher Award

Dr. Masoumeh Bararzadeh Ledari | Environmental Science | Best Researcher Award

Amirkabir University of Technology | Iran

Dr. Masoumeh Bararzadeh Ledari is a distinguished academic and sustainability researcher serving as a Lecturer at Amir Kabir University of Technology. She is widely recognized for her pioneering work in energy systems, sustainable development, and integrated climate-resource modeling. With an extensive background bridging academia, international research institutions, and industry, she has successfully combined theoretical frameworks with practical applications to design innovative solutions for global challenges in energy transition and environmental sustainability. Her reputation as a thought leader is evident in her ability to link resource management, industrial optimization, and climate change resilience in a holistic way.

Professional Profile

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Education

Dr. Masoumeh Bararzadeh Ledari has an impressive academic journey, beginning with her undergraduate degree in Chemical Engineering from Tehran University, where she focused on experimental modeling of advanced gasification systems. She pursued her Master’s degree in Energy Engineering at Sharif University of Technology, with research dedicated to improving refinery efficiency and reducing environmental impacts through innovative safety and process integration methods. Her doctoral work at the same institution advanced the field of sustainable resource management through hybrid evaluation models designed to minimize ecological costs of energy and material flows. Throughout her education, she consistently aligned her studies with the goal of addressing pressing issues in climate change and energy systems, which shaped the foundation for her current research.

Experience

Dr. Masoumeh Bararzadeh Ledari has built a strong career through a combination of academic appointments, international research fellowships, and technical consultancy leadership. As a Lecturer and Adjunct Professor, she has taught advanced courses in renewable energy technologies, waste management, building life cycle design, and exergy analysis at top universities in Iran. Her academic career is complemented by international research experience at renowned institutions such as the International Institute for Applied Systems Analysis in Austria and the Research Centre for Energy Resources and Consumption in Spain, where she contributed to nexus-based modeling and thermodynamic system analysis. Beyond academia, she has served as Technical Manager and Scientific Director in several national and international projects, leading consultancy in petrochemical, steel, and energy industries. Her leadership in projects involving hydrogen transition pathways, carbon capture and storage, integrated resource management, and climate policy frameworks demonstrates her unique ability to translate research into transformative practice.

Research Interests

Dr. Masoumeh Bararzadeh Ledari’s research portfolio reflects her interdisciplinary vision for sustainability. Her main focus lies in the water-food-energy-climate-land nexus, where she has developed advanced models to address complex interdependencies of resources. She is deeply engaged in circular economy approaches, regenerative life modeling, exergy-based ecosystem simulation, and life cycle assessment, with the objective of reducing the environmental footprint of industrial systems. Another core area of her work addresses low-carbon transitions in industries such as steel, petrochemicals, and hydrogen production, where she integrates climate strategies with technological innovation. Her research is globally relevant, as it provides both scientific and policy insights into mitigating climate change while ensuring long-term socio-economic resilience.

Awards

Dr. Masoumeh Bararzadeh Ledari’s contributions have earned her recognition as an emerging leader in sustainability research. She has been entrusted with key consultancy roles for organizations such as the Food and Agriculture Organization (FAO) and the United Nations Development Programme (UNDP), where her expertise shaped frameworks for climate change adaptation, stakeholder engagement, and natural resource management. She has also played a central role in developing strategies for carbon capture and storage at the Presidential Center for Progress and Development in Iran, marking a milestone in national climate policy. Her selection as a lead researcher in collaborative international projects and her leadership in critical industry-focused sustainability initiatives highlight her standing as a scholar whose work has both academic and practical impact.

Publications

Dr. Masoumeh Bararzadeh Ledari has authored influential articles that have appeared in high-impact journals and are widely cited by other scholars. Her works include:

Title: Digitalised circular construction supply chain: An integrated BIM-Blockchain solution
Journal: Automation in Construction
Published on: 2023
Citation: 137

Title: Greening steel industry by hydrogen: Lessons learned for the developing world
Journal: International Journal of Hydrogen Energy
Published on: 2023
Citation: 92

Title: Multi objective planning for sustainable retrofit of educational buildings
Journal: Journal of Building Engineering
Published on: 2019
Citation: 49

Title: Building circularity as a measure of sustainability in the old and modern architecture: A case study of architecture development in the hot and dry climate
Journal: Energy and Buildings
Published on: 2022
Citation: 42

Title: Sustainable hydrogen supply chain development for low-carbon transportation in a fossil-based port region: A case study in a tourism hub
Journal: International Journal of Hydrogen Energy
Published on: 2024
Citation: 28

Title: Water-food-energy-ecosystem nexus model development: Resource scarcity and regional development
Journal: Energy Nexus
Published on: 2023
Citation: 17

Title: Exergy analysis of high-performance cycles for gas turbine with air-bottoming
Journal: Mechanical Engineering Research
Published on: 2012
Citation: 17

Conclusion

Dr. Masoumeh Bararzadeh Ledari exemplifies the qualities of a world-class researcher, combining academic excellence, technical expertise, and global engagement. Her sustained commitment to advancing sustainable energy systems and integrated climate-resource models has produced measurable impacts on both scholarship and industry. By uniting scientific innovation with policy and industrial implementation, she represents the new generation of researchers driving the transition to a more sustainable and resilient future. Her body of work makes her an outstanding candidate for the Best Researcher Award.

Biman Gati Gupta | Environmental Science | Best Researcher Award

Prof. Dr. Biman Gati Gupta | Environmental Science | Best Researcher Award

Elitte College of Engineering, Kolkata | India

Dr. Biman Gati Gupta, PhD, C.Engg, BCEEM, FEWRI, FASCE, is a distinguished civil and environmental engineer with over four decades of professional experience spanning academia, consultancy, and international development. As a Fellow of multiple prestigious institutions including the Institute of Engineers (India), the American Society of Civil Engineers (ASCE), and the Environmental & Water Resources Institute (EWRI), he has made remarkable contributions to sustainable infrastructure development, environmental management, and water resource conservation. His professional journey reflects a rare blend of engineering innovation, leadership, and commitment to public welfare.

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Education

Dr. Biman Gati Gupta earned his Ph.D. in Ecological Studies and Engineering from the University of Kalyani, complemented by a Postgraduate Diploma in Environmental Management from the same institution. He holds a Bachelor of Engineering in Civil Engineering from B.E. College, Shibpur (now IIEST, Shibpur), under the University of Calcutta. He further enhanced his expertise with certifications in Project Management from the Indian Institute of Management, Calcutta, Financial Management from the Management Development Institute, New Delhi, and Climate Change & Public Health from Imperial College, London. His educational foundation demonstrates both technical depth and multidisciplinary engagement with management and environmental sciences.

Experience

With a career of more than 44 years, Dr. Biman Gati Gupta has held diverse roles in civil construction, water and wastewater treatment, power plant engineering, consultancy, and academia. His career began as a Site Engineer and later progressed into design engineering with Geo. Miller & Co. Pvt. Ltd. and Bharat Heavy Electricals Limited, followed by major responsibilities in NTPC Ltd. He served for nearly three decades at the West Bengal Consultancy Organization, advancing from Senior Consultant to Vice President, where he managed large-scale industrial and environmental projects. His international roles include serving as a World Bank Consultant for rural development and minor irrigation projects in West Bengal. Most recently, he has contributed as Professor and Head of the Civil and Environmental Engineering Department at Elitte College of Engineering, shaping the next generation of engineers.

Research Interests

Dr. Biman Gati Gupta’s research interests focus on environmental management, wastewater treatment, sustainable water resources, and the ecological impact of industrial effluents. His work emphasizes applied solutions such as membrane-based ultrafiltration and reverse osmosis systems for water conservation. He has also contributed to the development of integrated project reports addressing industrial water supply, sewage disposal, and environmental mitigation measures. His scholarship combines practical engineering with ecological sustainability, bridging the gap between industry and environmental stewardship.

Awards

Dr. Biman Gati Gupta’s pioneering work has earned him numerous recognitions, including being conferred Fellowships from the Institute of Engineers (India), ASCE, and EWRI. He was Board Certified as an Eminent Environmental Scientist and Engineer by AAEES (USA). His outstanding contribution to groundwater conservation research was honored with the prestigious Srimati Sarala Bala Sanyal Memorial Gold Award for Best Paper, published in IEI Series A (Springer). His leadership roles include serving as Treasurer of ASCE India Section and as a trustee and council member of the Royal Society of Textile Institute, UK.

Publications

Dr. Biman Gati Gupta has authored one book chapter on wastewater treatment, three books on environmental management, and eleven peer-reviewed research articles in internationally recognized journals, including Springer, Elsevier, and Sage. He has also prepared twenty-six technical project reports and presented his research at both international and national platforms.

Example Research Article:

  • Title: Heavy metal contamination from textile wastewater and its health impacts: a case study from West Bengal with sustainable remediation approaches

  • Journal: Scientific Reports

  • Published on: August 12, 2025

Conclusion

Dr. Biman Gati Gupta is a highly accomplished researcher, engineer, and academic leader whose career embodies excellence in civil and environmental engineering. His contributions to wastewater treatment, water conservation, and sustainable infrastructure have been recognized globally, reflecting his capacity to address complex engineering challenges with innovative, practical solutions. His distinguished professional record, combined with impactful research and leadership in international collaborations, make him a strong and deserving candidate for the Best Researcher Award.

Vladimir Lukin | Environmental Science | Best Paper Award

Prof. Vladimir Lukin | Environmental Science | Best Paper Award

VE Zuev Institute of Atmospheric Optics RAS | Russia

Prof. Vladimir Lukin is a globally recognized physicist and atmospheric optics researcher whose work has profoundly influenced the study of optical wave propagation and adaptive optics. Based at the Institute of Atmospheric Optics, Siberian Branch of the Russian Academy of Sciences in Tomsk, he has devoted his career to advancing the understanding of stochastic processes in optical systems and the behavior of electromagnetic waves in turbulent media. Alongside his role as a senior scientist, he has also served as a professor at Tomsk State University, where he continues to mentor graduate students and doctoral researchers. His scholarly contributions span theoretical modeling, experimental verification, and the development of new optical instruments, positioning him as a leading authority in atmospheric physics and optical engineering.

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Education

Prof. Vladimir Lukin pursued his academic training in physics at Tomsk State University, where he obtained his degree with a specialization in theoretical and applied optics. He later advanced his studies to earn the Candidate of Sciences qualification in physics and mathematics, followed by the Doctor of Sciences degree at the Institute of Atmospheric Optics. His rigorous education laid the foundation for groundbreaking work in wave propagation theory, atmospheric turbulence, and adaptive optics. The combination of a strong theoretical background and practical experimental training allowed him to bridge academic knowledge with applied research, which became the hallmark of his career.

Experience

Prof. Vladimir Lukin has spent his professional life at the Institute of Atmospheric Optics, beginning as a junior researcher and rising to senior positions of leadership, including serving as head of a major laboratory and director of the Wave Propagation Division. His research management role enabled him to lead significant investigations into optical wave fluctuations, turbulence modeling, and the development of adaptive systems. Parallel to his research career, he has been actively engaged in teaching as a professor at Tomsk State University, where he has designed and delivered advanced courses in opto-electronic systems and adaptive optics applications. He has supervised numerous graduate and doctoral researchers, many of whom have become established scientists in optics and radiophysics. In addition to his academic and institutional contributions, he has served as guest editor for international journals and proceedings and has delivered invited lectures and seminars at leading institutions and scientific conferences worldwide.

Research Interests

Prof. Vladimir Lukin’s principal research interests revolve around optical wave propagation through random and inhomogeneous media, the statistical theory of phase fluctuations, and the foundations of atmospheric adaptive optics. He has pioneered theoretical models describing the behavior of optical waves under strong turbulence conditions, including the emergence of speckle fields and phase dislocations. His investigations into the reconstruction of wavefronts have provided essential methodologies for improving resolution in astronomical and defense applications. He has also contributed to the development of laser guide star techniques, creating theoretical frameworks and experimental validations that have since become a cornerstone of adaptive optics. His ongoing work emphasizes the study of atmospheric turbulence spectra, design of optical wave photometers, and novel methods for describing and mitigating phase distortions in complex optical systems.

Awards

Prof. Vladimir Lukin has been honored with numerous national and international awards recognizing his scientific excellence and contributions to atmospheric optics. He has received medals for his service to science and his country, as well as prestigious international recognitions such as the Galileo Galilei Medal. His outstanding academic and research achievements have also been acknowledged with distinctions from European scientific and industrial organizations. In addition to these honors, he has been elected as a Fellow of both SPIE and the Optical Society of America, a testament to his leadership and influence within the global optics community. These accolades collectively highlight his pioneering role in advancing adaptive optics, optical turbulence studies, and applied physics.

Publications

Title : Atmospheric Adaptive Optics
Journal: SPIE Optical Engineering Press
Published on: 1995
Citation: 181

Title : Atmospheric Adaptive Optics
Journal: Nauka, Novosibirsk
Published on: 1986
Citation: 132

Title : Optical Wave Phase Fluctuations
Journal: Applied Optics
Published on: 1981
Citation: 119

Title : Beam Spreading of Vortex Beams Propagating in Turbulent Atmosphere
Journal: Applied Optics 
Published on: 2012
Citation: 109

Title : Adaptive Formation of Beams and Images in the Atmosphere
Journal: Novosibirsk: Publishing House of the Siberian Branch of the Russian Academy of Sciences
Published on: 1999
Citation: 104

Title : Adaptive Beaming and Imaging in the Turbulent Atmosphere
Journal: SPIE Press
Published on: 2002
Citation: 95

Title : Optical Correlation Algorithm for Reconstructing Phase Skeleton of Complex Optical Fields for Solving the Phase Problem
Journal: Optics Express 
Published on: 2014
Citation: 85

Title : Thermal Distortions of Focused Laser Beams in the Atmosphere
Journal: Applied Optics
Published on: 1985
Citation: 79

Conclusion

The contributions of Prof. Vladimir Lukin to atmospheric optics and adaptive systems are of exceptional originality, significance, and lasting influence. His nominated work on laser reference beacons represents a foundational breakthrough that has transformed adaptive optics by enabling precise correction of atmospheric turbulence, a development that has become indispensable for astronomy, space science, and defense technologies. Beyond this paper, his broader body of research has consistently advanced the frontiers of optical science through pioneering theoretical insights, innovative experimental methods, and the training of future leaders in physics and engineering. Recognized internationally with prestigious honors and fellowships, Prof. Vladimir Lukin exemplifies the highest standards of scientific achievement. His work not only fulfills but elevates the goals of the Best Paper Award, embodying a legacy of scholarship and innovation that continues to shape modern optics worldwide.

Zhongquan Wan | Renewable Energy Technologies | Best Researcher Award

Dr. Zhongquan Wan | Renewable Energy Technologies | Best Researcher Award

University of Electronic Science and Technology  | China

Dr. Zhongquan Wan is a dedicated academic and researcher in the field of Electronic Science and Technology. Serving as a faculty member at the University of Electronic Science and Technology, he has significantly contributed to the advancement of semiconductor micro/nano materials and energy conversion thin-film devices. His expertise is reflected in his extensive publication record, patent portfolio, and leadership in national-level scientific projects.

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Education

Dr. Wan completed his doctoral studies in Electronic Science and Technology at the prestigious University of Electronic Science and Technology. His strong academic foundation laid the groundwork for his future innovations in material science and energy applications.

Experience

Since completing his Ph.D., Dr. Wan has been a dedicated faculty member at the University of Electronic Science and Technology. He has established himself as an expert in new semiconductor micro/nano materials and thin-film energy devices, actively mentoring students and leading cutting-edge research in these fields.

Research Interest

His research primarily focuses on new semiconductor micro/nano materials and energy conversion thin-film devices. Dr. Wan is particularly interested in exploring high-efficiency materials that bridge the gap between fundamental science and real-world energy applications, aiming to solve global energy challenges through material innovation.

Awards

Dr. Wan has been nominated for several prestigious research awards in recognition of his impactful work. His leadership in over 10 funded projects, including those from the National Natural Science Foundation of China and the Sichuan Provincial Science and Technology Plan, highlights his credibility as a principal investigator and scientific innovator.

Publications

Dr. Wan has authored over 30 high-impact SCI papers as the first or corresponding author in top-tier journals. His work has been cited over 600 times, reflecting its influence in the scientific community.

  • Tailoring pyridine bridged chalcogen-concave molecules for defects passivation enables efficient and stable perovskite solar cells
    Journal: Nature Communications
    Published on: 2025
    Citation: 10 citations

  • Polymer-acid-metal quasi-ohmic contact for stable perovskite solar cells beyond a 20,000-hour extrapolated lifetime
    Journal: Nature Communications
    Published on: 2024
    Citation: 27 citations

  • Anionic engineering of a p-dopant enables efficient and stable perovskite solar cells
    Journal: Journal of Materials Chemistry A
    Published on: 2024
    Citation: 4 citations

  • Dual functionality of charge extraction and interface passivation by self-assembled monolayers in perovskite solar cells
    Journal: (Journal Name not provided)
    Published on: (Year not provided)
    Citation: 26 citations

  • Combining component screening, machine learning and molecular engineering for the design of high-performance inverted perovskite solar cells
    Journal: Energy and Environmental Science
    Published on: 2024
    Citation: 7 citations

  • Efficient and stabilized molecular doping of hole-transporting materials driven by a cyclic-anion strategy for perovskite solar cells
    Journal: Chemical Science
    Published on: 2024
    Citation: 4 citations

Conclusion

Dr. Zhongquan Wan exemplifies academic excellence and research leadership in the fields of electronic materials and energy systems. His contributions, spanning impactful publications, patents, and nationally funded projects, make him a distinguished nominee for research recognition and innovation awards. His work continues to influence the global scientific community and inspire future breakthroughs in sustainable technologies.

Tengfei Cheng | Materials | Best Researcher Award

Mr. Tengfei Cheng | Materials | Best Researcher Award

Hefei General Machinery Research Institute Co., Ltd | China

Tengfei Cheng is a dedicated engineer and researcher specializing in materials science and engineering. With a strong academic background and extensive experience in research and development, he has contributed significantly to the fields of hydrogen storage materials, electrochemical energy storage, and corrosion-resistant alloys. Currently, he is serving as an engineer at the Hefei General Machinery Research Institute, focusing on pressure vessel and pipeline technology.

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Strengths for the Awards✨

  1. Extensive Research Contributions: Tengfei Cheng has published numerous high-impact journal articles across various reputable journals, including Angewandte Chemie International Edition, ACS Applied Materials & Interfaces, and Industrial & Engineering Chemistry Research.
  2. Diverse Research Areas: His work spans multiple crucial areas, including lithium-ion and lithium-sulfur batteries, hydrogen storage materials, and aluminum alloys, showcasing his versatility and expertise in materials science and engineering.
  3. Notable Research Funding: He has secured multiple research grants, including projects on hydrogen storage systems and high-entropy alloys, indicating recognition of his work by funding agencies.
  4. Strong Academic Background: With both a Bachelor’s and Master’s degree in Materials Science and Engineering from Shanghai University, he has a solid educational foundation that supports his research excellence.
  5. Industry and Academic Experience: His employment at Hefei General Machinery Research Institute and Yunnan Innovation Institute of Beijing University of Aeronautics and Astronautics reflects his contributions to both industrial applications and academic research.

Education 🎓

Tengfei Cheng holds both a Master’s and a Bachelor’s degree in Materials Science and Engineering from Shanghai University. His academic journey began in 2014 with undergraduate studies, followed by a master’s degree completed in 2021. His research during this period laid the foundation for his expertise in advanced materials and their applications in energy storage and structural integrity.

Professional Experience 💼

Cheng has accumulated valuable experience in engineering and research. He started as an assistant engineer at the New Materials Research Center of Yunnan Innovation Institute, Beijing University of Aeronautics and Astronautics, before moving to his current role at Hefei General Machinery Research Institute. His work primarily revolves around the development of high-performance materials for industrial applications, with a focus on safety assessments and material durability.

Research Interests On Materials 🔬

Cheng’s research interests span several cutting-edge areas in materials science, including:

  • Hydrogen storage materials and high-entropy alloys
  • Electrochemical energy storage, including lithium-sulfur and sodium-ion batteries
  • Corrosion-resistant alloys and mechanical properties of aluminum-based materials
  • Advanced material processing techniques, such as high-pressure torsion and molecular dynamics simulations

Awards & Funding 🏆

Tengfei Cheng has been recognized for his contributions through various research grants and funding programs:

  • China National Machinery Industry Corporation Grant (2024-2027): Design and Safety Assessment Technology of High-Density Adaptive Solid-State Hydrogen Storage System.
  • Hefei General Machinery Research Institute Grant (2023-2025): Research on Uniformization Preparation and Hydrogen Storage Properties of Titanium-Based High-Entropy Alloys.

Publications 📚

Cheng has authored numerous research papers in prestigious journals. Some of his key publications include:

  • “Enhanced Lithium Polysulfide Conversion via the Second Current Collector Based on Multitransition-Metal-Phosphides for Li–S Batteries”

    • Authors: Liqing He, Kaiquan He, Tengfei Cheng, Wanggang Fang, Chaoqun Shang

    • Publication Year: 2025

  • “Thiol-assisted regulated electronic structure of ultrafine Pd-based catalyst for superior formic acid electrooxidation performances”

    • Authors: Yanling Hu, Jianding Li, Qianqian Wang, Xueqing Yu, Yao Kang, Tengfei Cheng, Liqing He, Linfeng Zhang

    • Publication Year: 2025

  • “Topological Insulator Heterojunction with Electric Dipole Domain to Boost Polysulfide Conversion in Lithium‐Sulfur Batteries”

    • Authors: Hedong Chen, Yecheng Qiu, Zhiyuan Cai, Wenhao Liang, Lin Liu, Manman Li, Xianhua Hou, Fuming Chen, Xunzhu Zhou, Tengfei Cheng, et al.

    • Publication Year: 2025

  • “Functionalized Polyethylene Separators with Efficient Li-Ion Transport Rate for Fast-Charging Li-Ion Batteries”

    • Authors: Ning Dang, Jiarong Mao, Yuqiong Mao, Wenjun Yi, Dan Li, Tengfei Cheng, Liqing He, Jinni Deng, Zhengping Zhao, Tianbao Zhao, et al.

    • Publication Year: 2025

  • “Study on the Microstructure and Mechanical Properties of Al–Cu–Mg Aluminum Alloy Based on Molecular Dynamics Simulation”

    • Authors: Jing Huang, Tengfei Cheng, Wanggang Fang, Xinghai Ren, Xiangqun Duan, Zhigong Xu, Shulin Xiang

    • Publication Year: 2024

  • “Effects of the corrosion mechanism evolution of low silicon-cast aluminium alloys in service”

    • Authors: Tengfei Cheng, Guoqing Zou, Xiaoyan Mao, Yuxiang Yang

    • Publication Year: 2023

  • “Electrolyte precursor–free approach to prepare composite electrolyte for all-solid-state Na-ion battery”

    • Authors: Liqing He, Zhen Wang, Yuxiang Li, Heng Lin, Jianjun Li, Tengfei Cheng, Qiang Zhu, Chaoqun Shang, Zonghai Lu, Ricardo Floriano, et al.

    • Publication Year: 2023

  • “Severe Plastic Deformation through High-Pressure Torsion for Preparation of Hydrogen Storage Materials – A Review”

    • Authors: Liqing He, Xiaowei Shi, Xiaoyan Li, Jing Huang, Tengfei Cheng, Xianfeng Wang, Yuxiang Li, Heng Lin, Kazuyuki Edalati, Hiroyuki W. Li

    • Publication Year: 2023

  • “Analysis of the Fluidity and Hot Tearing Susceptibility of AlSi3.5Mg0.5Cu0.4 and A356 Aluminum Alloys”

    • Authors: Guoqing Zou, Yujie Chai, Qiang Shen, Tengfei Cheng, Hong Zhang

    • Publication Year: 2022

  • “The Improvement in Mechanical Properties and Strengthening Mechanism of The New Type of Cast Aluminum Alloy with Low Silicon Content for Automotive Purposes”

    • Authors: Tengfei Cheng, Peng Li, Fucheng Lu, Chao Wang, Hong Zhang, Yuxiang Yang

    • Publication Year: 2022

Conclusion 📈

Tengfei Cheng is a highly accomplished researcher whose work has made significant contributions to the fields of materials science, hydrogen storage, and electrochemical energy storage. His continued research and expertise in developing innovative materials promise to shape the future of sustainable energy solutions and advanced engineering materials.

Hongyang Zhang | Materials | Best Researcher Award

Mr. Hongyang Zhang | Materials | Best Researcher Award

Taiyuan University of Technology | China

Hongyang Zhang is currently a postgraduate student at Taiyuan University of Technology, pursuing a Master’s degree in Mechanical Engineering. His research primarily focuses on the lightweight forming of magnesium alloys, aiming to enhance material performance and manufacturing processes.

Professional profile👤

Scopus

Strengths for the Awards✨

  • Focused Research Area: Hongyang Zhang’s work on the lightweight forming of magnesium alloys addresses critical challenges in mechanical engineering, particularly in enhancing material properties while reducing weight — a significant contribution to industries like aerospace and automotive.

  • Ongoing Projects: The projects on “Control of Thin Plate Microstructure and Plastic Forming Properties Based on Pre-Twinning” and “Shape Control Mechanism of Complex Stamping Components” demonstrate a clear research trajectory with practical implications.

  • Journal Publication: The paper titled “Evolution of Microstructure and Mechanical Properties of AZ31 Sheets with Different Initial Microstructures During the Corrugated Wide Limit” indicates an ability to conduct and publish research in indexed journals, showcasing scientific rigor.

Education 🎓

  • Master’s Degree (Ongoing) in Mechanical Engineering, Taiyuan University of Technology, China.

Experience 💼

Hongyang Zhang has been actively involved in research projects centered around material science and mechanical engineering. His notable projects include the “Control of Thin Plate Microstructure and Plastic Forming Properties Based on Pre-twinning” conducted from August 2022 to December 2023, and the “Shape Control Mechanism of Complex Stamping Components Based on Local Organization Pre-regulation,” which began in January 2024 and is ongoing.

Research Interests On Materials🔬

His research interests encompass lightweight materials, magnesium alloys, microstructure control, and plastic forming processes, aiming to improve mechanical properties and industrial applications.

Awards 🏆

  • Best Researcher Award (Nomination Pending)

Publications 📚

Title: Effect of Initial Microstructure on Twinning, Dynamic Recrystallization Behaviors, and Mechanical Properties of Pre-twinned AZ31 Mg Sheets

Authors: Z. Li, Zhijian; H. Nie, Huihui; H. Zhang, Hongyang; H. Chen, Hongsheng; W. Liang, Wei

Publication Year: 2025

Conclusion 🌍

Hongyang Zhang is a dedicated researcher with a keen interest in advancing material engineering. His ongoing projects and academic pursuits underscore his commitment to enhancing the performance of lightweight materials, contributing to the broader field of mechanical engineering.

Wei Yang | Materials | Best Researcher Award

Prof. Wei Yang | Materials | Best Researcher Award

Associate Professor | China Three Gorges University | China

Dr. Wei Yang is an esteemed Associate Professor at China Three Gorges University, specializing in organic photoelectric functional materials, biomedical diagnosis and treatment, and X-ray scintillator imaging. With a prolific research career, he has contributed significantly to the field of organic light-emitting diodes (OLEDs) and functional luminescent materials. His dedication to scientific advancements is evident through his extensive publication record in top-tier journals.

Profile👤

ORCID

Strengths for the Awards✨

🔹 Outstanding Research Output: Dr. Wei Yang has published nearly 40 SCI papers in internationally recognized journals, including Angewandte Chemie International Edition, Nature Communications, Advanced Functional Materials, Chemical Engineering Journal, and Science China Chemistry.

🔹 Significant Contributions: His research spans organic photoelectric functional materials, biomedical diagnosis & treatment, X-ray scintillator imaging, and organic light-emitting diodes (OLEDs)—highly relevant and impactful areas in both scientific innovation and industrial applications.

🔹 Authorship & Impact: Many of his papers list him as the first author or corresponding author, reflecting his leadership in research.

🔹 Diverse Research Impact: His work covers fundamental material synthesis, optoelectronic applications, and biomedical imaging, showcasing multidisciplinary expertise.

🔹 Institutional Recognition: Holding the position of Associate Professor at China Three Gorges University, Dr. Yang has an established academic and research career.

Education 🎓

Dr. Wei Yang has a strong academic background in chemistry and materials science, which has fueled his research interests and professional growth. His educational journey has equipped him with the expertise to lead innovative research in organic optoelectronic materials.

Experience 🌍

  • 2024.7 – Present: Associate Professor, China Three Gorges University Dr. Yang has been contributing to scientific research and mentoring students in the field of advanced functional materials, fostering innovation in organic electronics and photonic technologies.

Research Interests On Materials🔍

  • Organic Photoelectric Functional Materials
  • Biomedical Diagnosis and Treatment
  • X-Ray Scintillator Imaging
  • Organic Light-Emitting Diodes (OLEDs) His research focuses on developing cutting-edge materials for next-generation display technologies, medical imaging, and optoelectronic applications.

Awards 🏆

Dr. Yang has received several recognitions for his contributions to organic electronic materials and luminescence applications. His research achievements continue to gain international recognition in the scientific community.

Publications 📚

  • Title: Dynamic reversible full-color piezochromic fluorogens featuring through-space charge-transfer thermally activated delayed fluorescence and their application as X-ray imaging scintillators
    Authors: Wei Yang, Chenlong Xie, Tianhao Chen, Xiaojun Yin, Qianqian Lin, Shaolong Gong*, Zewei Quan*, Chuluo Yang*
    Year: 2024

  • Title: Near-infrared multiple-resonance polycyclic aromatic hydrocarbon as type I photosensitizer toward high-performance synergistic phototherapy
    Authors: Yulong Shi+, Wei Yang+, He Zhang, Cheng Zhong, Shaolong Gong, Changying Yang*
    Year: 2025

  • Title: An effective approach toward yellow-to-orange multi-resonance TADF emitters by integrating strong electron donor into B/N-based polycyclic architecture: High performance OLEDs with nearly 40% EQE
    Authors: Wei Yang, Jingsheng Miao, Fengping Hu, Yang Zou*, Cheng Zhong, Shaolong Gong, Chuluo Yang*
    Year: 2023

  • Title: Simple double hetero[5]helicenes realize highly efficient and narrowband circularly polarized organic light-emitting diodes
    Authors: Wei Yang+, Nengquan Li+, Jingsheng Miao, Lisi Zhan, Shaolong Gong, Zhongyan Huang, Chuluo Yang*
    Year: 2022

  • Title: Pyrazine-fused polycyclic aromatic hydrocarbons towards efficient multiple-resonance narrowband deep-blue emission
    Authors: Yajie Wang, Wei Yang*, He Zhang, Nengquan Li, Shaolong Gong, Xiang Gao*, Chuluo Yang*
    Year: 2024

  • Title: Polycyclic phenazine-derived rigid donors construct thermally activated delayed fluorescence emitters for highly efficient orange OLEDs with extremely low roll-off
    Authors: Wei Yang, Weimin Ning, Hsin Jungchi, Tengxiao Liu, Xiaojun Yin, Changqing Ye, Shaolong Gong, Chuluo Yang*
    Year: 2022

  • Title: Polymorphism-dependent thermally activated delayed fluorescence materials with diverse three-dimensional supramolecular frameworks
    Authors: Wei Yang, Yiyu Yang, Lisi Zhan, Kailu Zheng, Zhanxiang Chen, Xuan Zeng, Shaolong Gong, Chuluo Yang*
    Year: 2020

  • Title: AIE-active multicolor tunable luminogens: simultaneous mechanochromism and acidochromism with high contrast beyond 100 nm
    Authors: Wei Yang, Yiyu Yang, Yuntao Qiu, Xiaosong Cao, Zhongyan Huang, Shaolong Gong, Chuluo Yang*
    Year: 2020

  • Title: Deep-red thermally activated delayed fluorescence emitters based on a phenanthroline-containing planar acceptor
    Authors: Wei Yang, Weiming Ning, Shaolong Gong, Chuluo Yang*
    Year: 2021

  • Title: AIE-active smart cyanostyrene luminogens: polymorphism-dependent multicolor mechanochromism
    Authors: Wei Yang+, Chunlin Liu+, Shuang Lu, Jinya Du, Qingyun Gao, Ronghua Zhang, Yi Liu, Changying Yang*
    Year: 2018

  • Title: Red-emitting benzo[e]indolium probes for HSA based on the TICT characteristics
    Authors: Wei Yang, Chunlin Liu, Shuang Lu, Shulin Cheng, Jinya Du, Qingyun Gao, Ping Shen, Huajun Luo, Yi Liu, Changying Yang*
    Year: 2017

Conclusion 🎯

Dr. Wei Yang is a leading researcher in organic electronic materials, making impactful contributions to optoelectronics and biomedical imaging. His commitment to innovation, extensive publication record, and academic leadership continue to shape the future of advanced functional materials. As an Associate Professor at China Three Gorges University, he remains dedicated to pioneering research and mentoring the next generation of scientists.

Liang-Wei Cui | Ecology | Best Researcher Award

Dr. Liang-Wei Cui | Ecology | Best Researcher Award

Southwest Forestry University | China

Dr. Liang-Wei Cui is a distinguished professor at the Faculty of Biodiversity Conservation, Southwest Forestry University, Kunming, China. His research primarily focuses on primate behavior ecology and conservation, as well as mammal biodiversity conservation and monitoring. With decades of experience in zoological studies, he has led several key projects on the conservation of endangered primates, particularly the Black-and-White Snub-Nosed Monkey.

Profile👤

ORCID

Scopus

Strengths for the Awards✨

Outstanding Research Contributions: Dr. Cui has an extensive publication record, with multiple high-impact papers on primate behavior, ecology, and conservation in well-respected journals such as the American Journal of Primatology, Ecology and Evolution, and Ecosystem Health and Sustainability. His research addresses critical issues in biodiversity conservation, particularly for endangered species like the Black-and-White Snub-Nosed Monkey (Rhinopithecus bieti).

Strong Research Focus & Impact: His work on mammal biodiversity conservation and monitoring directly contributes to wildlife protection strategies, habitat restoration, and species survival. Projects funded by the National Natural Science Foundation of China (NSFC) demonstrate the significance and credibility of his research.

Collaborative and International Recognition: Dr. Cui collaborates with multiple researchers across institutions, including leading primatologists and conservation scientists. His research includes interdisciplinary studies on habitat fragmentation, provisioning impacts, and climate effects on wildlife, showing a broad and integrative scientific approach.

Long-Term Commitment to Conservation: With over 15 years of experience as a professor at Southwest Forestry University, Dr. Cui has contributed significantly to the academic and scientific community, training future conservationists and zoologists.

🎓 Education

  • Ph.D. in Zoology (September 1997 – July 2003)
    Kunming Institute of Zoology, Chinese Academy of Sciences, Kunming, Yunnan, China

👨‍🏫 Experience

  • Professor (August 2008 – Present)
    Southwest Forestry University, Kunming, Yunnan, China

🔬 Research Interests On Ecology

Dr. Cui’s research spans two major areas:

  • Primate Behavior Ecology and Conservation
  • Mammal Biodiversity Conservation and Monitoring

His work primarily focuses on understanding primate behavior, habitat fragmentation, and conservation strategies to mitigate threats to endangered species.

🏆 Awards

Dr. Cui has been recognized for his contributions to primate conservation and biodiversity research, receiving multiple grants and accolades for his work in wildlife preservation and ecological sustainability.

📚 Publications

Dr. Cui has authored several influential research papers in primatology and conservation science. Below are some of his recent publications:

  • A new record of Coelichneumon rufofemoratus (Cameron, 1903) (Hymenoptera: Ichneumonidae) from Eastern Himalayas, with a checklist of all the species of the genus from the Oriental region

    • Authors: Yang, Xia; Huang, Zhi-Pang; Cui, Liang-Wei; Pos, Davide Dal; Reshchikov, Alexey; Xiao, Wen
    • Year: 2024
    • Citations: Not available
  • Surviving at the highest and coldest: Nutritional and chemical components of fallback foods for Yunnan snub-nosed monkeys

    • Authors: Pan, Hao; Hou, Rong; Zhang, He; Li, Yanpeng; Huang, Zhipang; Cui, Liangwei; Xiao, Wen
    • Year: 2024
    • Citations: Not available
  • Variation in monthly and seasonal elevation use impacts behavioral and dietary flexibility in Rhinopithecus bieti

    • Authors: Kraus, Jacob B.; Huang, Zhi-Pang; Li, Yan-Pang; Cui, Liang-Wei; Wang, Shuang-Jin; Li, Jin-Fa; Liu, Feng; Wang, Yun; Strier, Karen B.; Xiao, Wen
    • Year: 2024
    • Citations: Not available
  • Integrative Taxonomy Revealed High Diversity of Hemiphyllodactylus Bleeker, 1860 (Squamata: Gekkonidae) and the Description of Three New Species from Yunnan Province, China

    • Authors: Hongxin Zhou; Xiuyan Li; Chaoying Yuan; Liangwei Cui; Shuo Liu; Dingqi Rao
    • Year: 2024
    • Citations: Not available
  • Effects of Environmental Factors on Bird Communities in Different Urbanization Grades: An Empirical Study in Lishui, a Mountainous Area of Eastern China

    • Authors: Zhang, Wenwen; Zhou, Ying; Fang, Xuelan; Zhao, Shengjun; Wu, Yi; Zhang, Haonan; Cui, Liangwei; Cui, Peng
    • Year: 2023
    • Citations: Not available
  • Effects of food availability and climate on the activity budget of Shortridge’s langur (Trachypithecus shortridgei) in the Drung Valley, Gaoligong Mountains, China

    • Authors: Zhang, Jia-Yang; Li, Ying-Chun; Yang, Yin; Garber, Paul A.; Han, Ke-Guo; Huang, Zhi-Pang; Cui, Liang-Wei; Xiao, Wen
    • Year: 2023
    • Citations: Not available
  • Effects of provisioning on the activity budget and foraging strategies of black-and-white snub-nosed monkeys (Rhinopithecus bieti) in the Baima Snow Mountain Nature Reserve, Yunnan, China

    • Authors: Li, Hong-Bo; Sun, Jing; Li, Lun-Hong; Zhou, Ying; Fang, Xue-Lan; Li, Bo-Yan; Guo, Long-Jie; Geng, Ying; Wang, Chun-Ping; Huang, Zhi-Pang et al.
    • Year: 2023
    • Citations: Not available
  • Stepping Stone Strategy: A Cost-Effective Way to Address Habitat Fragmentation of Endangered Wildlife in Montane Forest

    • Authors: Wang, Haohan; Gao, Ying; Li, Yanpeng; Li, Na; Grueter, Cyril C.; Xu, Huiming; Huang, Zhipang; Cui, Liangwei; Xiao, Wen
    • Year: 2023
    • Citations: Not available
  • Ontogenetic Development of Sexual Dimorphism in Body Mass of Wild Black-and-White Snub-Nosed Monkey (Rhinopithecus bieti)

    • Authors: Yan-Peng Li; Huang Zhi-Pang; Yin Yang; Xiao-Bin He; Ru-Liang Pan; Xin-Ming He; Gui-Wei Yang; Hua Wu; Liangwei Cui; Wen Xiao
    • Year: 2023
    • Citations: Not available
  • Southwest China, the last refuge of continental primates in East Asia

    • Authors: Zhang, He; Lu, Jiqi; Tang, Shiyi; Huang, Zhipang; Cui, Liangwei; Lan, Daoying; Wang, Haitao; Hou, Rong; Xiao, Wen; Guo, Songtao et al.
    • Year: 2022
    • Citations: Not available

🔚 Conclusion

Dr. Liang-Wei Cui’s research has significantly contributed to the field of primate conservation and biodiversity monitoring. His work on habitat fragmentation, primate ecology, and wildlife protection has influenced conservation policies and strategies in China and beyond. As a dedicated researcher and professor, he continues to mentor young scientists and lead conservation efforts for endangered species. 🌍