Jun-Qing Yin | Chemistry | Best Researcher Award

Prof. Dr. Jun-Qing Yin | Chemistry | Best Researcher Award

Prof. Dr. Jun-Qing Yin | Chemistry | Chengdu University | China

Dr. Jun-Qing Yin is a distinguished researcher specializing in physical chemistry, with a focus on catalytic mechanisms and surface science. Currently serving as a Research Fellow at the Institute of Advanced Study, Chengdu University, China, he has made significant contributions to understanding single-atom alloys, phase-separated alloys, and metal-support interfaces in catalytic reactions. His academic journey includes a Ph.D. in Physical Chemistry from the University of Chinese Academy of Sciences, an M.Sc. from Inner Mongolia Normal University, and a B.Sc. from Shanxi Datong University. Dr. Yin’s work blends advanced theoretical investigations with collaborative experimental studies, resulting in impactful publications in leading journals such as Nature, Science, and Journal of Catalysis. He has conducted postdoctoral research in the renowned group of Shigeyoshi Sakaki at Kyoto University, Japan. Recognized for his rigorous approach and innovative insights, Dr. Yin continues to push the boundaries of catalytic chemistry and its applications in energy and materials science.

Author Profiles

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Education

Dr. Jun-Qing Yin holds a Doctor of Philosophy in Physical Chemistry from the University of Chinese Academy of Sciences, Beijing, where his research focused on the theoretical investigation of iron surfaces and iron-silica interfaces in Fischer-Tropsch Synthesis (FTS). He earned his Master’s degree in Physical Chemistry from Inner Mongolia Normal University, Hohhot, where he explored the structures and stabilities of gold clusters and their adsorption properties with formaldehyde (HCHO). His academic foundation was built at Shanxi Datong University, where he completed his Bachelor’s degree in Chemistry, gaining a comprehensive understanding of chemical principles and laboratory techniques. Throughout his academic training, Dr. Yin combined computational chemistry, quantum chemical calculations, and catalysis-focused studies, developing a strong theoretical and analytical skill set. His academic trajectory demonstrates a consistent focus on catalysis, materials interfaces, and reaction mechanisms, positioning him as a leading figure in the intersection of computational chemistry and applied catalytic research.

Experience

Dr. Jun-Qing Yin’s professional career reflects a strong combination of theoretical expertise and applied catalytic research. Since June 2022, he has been a Research Fellow at Chengdu University, where he investigates the stability and catalytic performance of single-atom alloys, NO-CO reactions, and methane dry reforming. Previously, from December 2020 to March 2022, he was a Postdoctoral Fellow at Kyoto University under the mentorship of Prof. Shigeyoshi Sakaki, focusing on the catalytic behavior of nickel-based gold single-atom alloys. During his doctoral and postdoctoral years, Dr. Yin’s research centered on understanding reaction mechanisms in Fischer-Tropsch Synthesis, particularly iron-based catalysts and metal-support interfaces. His work bridges theoretical modeling and experimental collaboration, enabling the rational design of advanced catalysts. He has published extensively in high-impact journals, contributing fundamental insights into alloy stability, surface modifications, and catalytic selectivity, and continues to collaborate internationally to advance catalytic science for industrial and environmental applications.

Awards and Honors 

Dr. Jun-Qing Yin’s career is marked by multiple academic and research achievements, reflected through high-profile publications in Nature, Science, and Journal of Catalysis. His invitation to join Prof. Shigeyoshi Sakaki’s esteemed research group at Kyoto University as a Postdoctoral Fellow is a testament to his research caliber and international recognition. Dr. Yin’s contributions to catalytic chemistry, particularly in Fischer-Tropsch Synthesis and alloy catalysis, have earned him a strong reputation within the global scientific community. His ability to integrate theoretical modeling with experimental validation has been widely acknowledged, leading to impactful collaborations with researchers worldwide. Several of his works have been cited as significant advancements in catalyst design, reaction mechanism understanding, and sustainable chemical processes. His research excellence continues to contribute to the development of next-generation catalysts with improved selectivity and efficiency, reinforcing his standing as a promising and influential scientist in the field of chemistry.

Research Focus 

Dr. Jun-Qing Yin’s research lies at the intersection of computational chemistry, catalysis, and materials science. His primary focus is on the stability and reactivity of single-atom alloys, phase-separated alloys, and metal-support interfaces. He has extensively studied the catalytic mechanisms in Fischer-Tropsch Synthesis, including CO activation, CH₄ formation, and carbon chain growth, with a special interest in iron-based catalysts and iron-carbide systems. His recent work explores the NO-CO reaction and methane dry reforming using nickel and gold single-atom alloys, revealing atomic-level insights into enhanced catalytic activity. Dr. Yin also investigates surface modifications, such as silica-based ligand binding, to improve C₂ oxygenate selectivity. Employing advanced computational modeling and collaborating with experimentalists, he aims to design catalysts with optimized performance for sustainable energy and industrial processes. His research bridges theory and practice, delivering both fundamental understanding and practical solutions for efficient and selective catalytic systems.

Publications Titles

  1. Regioselective hydroformylation of propene catalysed by rhodium–zeolite.

  2. Catalysis of Ni-based gold single-atom alloy for NO–CO reaction.

  3. Surface modification of Fe₅C₂ by silica-based ligand for enhanced C₂ oxygenate selectivity .

  4. New reaction mode of 3-halooxindoles for indolenine-fused oxathiines synthesis.

  5. Theoretical study of iron–silicon interface by Fe deposition on Si(111)-(7×7) .

  6. Visualization of on-surface ethylene polymerization.

  7. Single atom vs phase-separated alloys in Ni, Cu, Ag, Au systems .

  8. Intrinsic facet-dependent CH₄ and C₂ formation on Fe₅C₂ particles .

  9. Tuning CH₄ selectivity via C₁ + C₁ couplings on Fe surfaces.

  10. Iron carbidization on silica and silicon studied via NAP-XPS & STM .

Conclusion

Dr. Jun-Qing Yin’s academic journey and research record demonstrate exceptional expertise in catalytic chemistry, particularly in theoretical modeling and alloy catalysis. His publications in top-tier journals, international collaborations, and cross-disciplinary approach position him as an innovative contributor to sustainable catalysis and energy-related chemistry. With a focus on translating atomic-level insights into practical applications, Dr. Yin’s work holds significant promise for advancing industrial catalytic processes. His combination of rigorous theoretical analysis and cooperative experimental engagement ensures his continued impact in the field of chemistry.

 

 

Christopher Chinnappan David | Chemistry | Best Researcher Award

Dr. Christopher Chinnappan David | Chemistry | Best Researcher Award

Dr. Christopher Chinnappan David, St. Xavier’s College, India

Dr. C. Christopher is a dedicated Assistant Professor in the Department of Chemistry, known for his expertise in organic and electro organic chemistry. With over two decades of academic experience, he has built a career rooted in research and teaching excellence. A native of Tamil Nadu, he earned his academic credentials from reputed institutions, including St. Joseph’s College, Trichy, and Alagappa University. Dr. Christopher is recognized for his commitment to both theoretical understanding and practical applications of chemistry. His contributions extend to mentoring students, publishing research, and participating in academic development programs. With a passion for chemical innovation and sustainability, he actively engages in scientific discussions and symposiums. As a proud member of the Christian (RC) community and a representative of the BC category, he also serves as a role model for aspiring scholars from diverse backgrounds. His journey reflects a perfect blend of scientific rigor, academic service, and community leadership.

Profile

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Google Scholar

Suitability Summary for Research for Best Researcher Awards: C. Christopher

C. Christopher is an Assistant Professor in the Department of Chemistry with a strong academic foundation and research background, making him a promising candidate for the Research for Best Researcher Awards. His educational qualifications include a Bachelor’s and Master’s degree in Chemistry from Bharathidasan University, followed by an M.Phil. in Industrial Chemistry (Organic Chemistry) and a PhD in Electro organic Chemistry. This progression reflects a deepening specialization in his field, particularly in the niche of electro organic chemistry—a modern and impactful area within chemical research.

His academic trajectory demonstrates consistent commitment to research and higher learning, as evidenced by completing his PhD roughly a decade after his initial degrees, showing both perseverance and dedication to advancing scientific knowledge. The focus on electro organic chemistry suggests his work may involve innovative methods for organic synthesis and electrochemical applications, which are highly relevant for developing sustainable chemical processes and new materials.

🎓 Education

Dr. C. Christopher’s academic journey showcases a focused progression in chemical sciences. He began with a B.Sc. in Chemistry from St. Joseph’s College, Trichy, under Bharathidasan University in 2001. He continued his academic pursuit with an M.Sc. in Chemistry from the same college and university, graduating in 2003. Driven by a deep interest in organic and industrial chemistry, he obtained his M.Phil. in Industrial Chemistry – Organic Chemistry from Alagappa University in 2004. His passion for research led him to a Ph.D. in Electro organic Chemistry, again at St. Joseph’s College, Trichy, awarded by Bharathidasan University in 2013. Each degree enriched his understanding of chemistry from foundational principles to advanced applications. His diverse academic background reflects his commitment to continuous learning, research, and specialization in both organic synthesis and electrochemical processes—key areas in modern chemical science.

💼 Professional Experience

Dr. C. Christopher serves as an Assistant Professor of Chemistry, bringing a wealth of teaching and research experience to academia. His professional journey spans across academic instruction, laboratory management, curriculum development, and research supervision. Throughout his career, he has guided students at the undergraduate and postgraduate levels, fostering critical thinking and scientific inquiry. Dr. Christopher is actively involved in departmental academic planning, workshops, and community-based science programs. His research contributions in electro organic chemistry and industrial applications of organic compounds have added value to his department and institution. Beyond classroom teaching, he frequently collaborates with peers for interdisciplinary research and attends academic conferences to stay current in his field. His holistic approach to education—merging theoretical concepts with experimental practice—has inspired many students to pursue careers in chemical sciences. With over 15 years in academia, he continues to be a committed educator and researcher in the ever-evolving field of chemistry.

🏅 Awards and Recognition

Dr. C. Christopher has garnered recognition for his consistent academic excellence, impactful research, and dedication to chemical education. Although specific award titles are not listed, his elevation to the position of Assistant Professor and the successful completion of a Ph.D. in a specialized field like electro organic chemistry highlight his academic distinction. He is regularly appreciated by students and colleagues for his teaching methodology, research mentorship, and contribution to departmental growth. Participation in various regional and national chemistry symposiums, along with publication of research in peer-reviewed journals, has earned him acclaim within academic circles. He is frequently invited to contribute to discussions on curriculum design, particularly in industrial and organic chemistry. His long-standing association with respected institutions like St. Joseph’s College, Trichy, is a testament to his credibility and respected stature. With future prospects for national and international awards, Dr. Christopher’s academic footprint is poised for greater recognition.

🌍 Research Skills On Chemistry

Dr. C. Christopher exhibits strong research expertise in electro organic chemistry, industrial chemistry, and organic synthesis, all of which are critical for modern applications in pharmaceuticals, green chemistry, and material sciences. He has a keen ability to design and conduct experiments involving electrochemical methods for organic transformations—an area known for its environmental benefits and innovation potential. His research blends classical organic chemistry principles with advanced analytical techniques, allowing for efficient characterization and optimization of chemical processes. Dr. Christopher is skilled in scientific writing, data analysis, and literature review, with an eye for identifying novel research gaps and sustainable chemical solutions. He is experienced in collaborating on interdisciplinary projects and guiding students through thesis development and experimental design. His scientific curiosity and methodological precision position him as a strong researcher committed to solving real-world chemical problems through academic inquiry and applied research.

📖 Publication Top Notes

  • 📘 Title: Electrochemical C (sp3)–H fluorination
    ✍️ Authors: Y. Takahira, M. Chen, Y. Kawamata, P. Mykhailiuk, H. Nakamura, B.K. Peters, …
    🔢 Citations: 99
    📅 Year: 2019

  • 📘 Title: Electroselective α-bromination of acetophenone using in situ bromonium ions from ammonium bromide
    ✍️ Authors: R. Jagatheesan, K.J.S. Raj, S. Lawrence, C. Christopher
    🔢 Citations: 32
    📅 Year: 2016

  • 📘 Title: Selective oxidation of benzyl alcohol by two phase electrolysis using nitrate as mediator
    ✍️ Authors: C. Christopher, S. Lawrence, A.J. Bosco, N. Xavier, S. Raja
    🔢 Citations: 32
    📅 Year: 2012

  • 📘 Title: Electrochemical selective oxidation of aromatic alcohols with sodium nitrate mediator in biphasic medium at ambient temperature
    ✍️ Authors: C. Christopher, S. Lawrence, M.A. Kulandainathan, K. Kulangiappar, …
    🔢 Citations: 30
    📅 Year: 2012

  • 📘 Title: Nitrate mediated oxidation of p-xylene by emulsion electrolysis
    ✍️ Authors: M. Balaganesh, S. Lawrence, C. Christopher, A.J. Bosco, K. Kulangiappar, …
    🔢 Citations: 29
    📅 Year: 2013

  • 📘 Title: Redox‐mediated oxidation of alcohols using Cl−/OCl− redox couple in biphasic media
    ✍️ Authors: A.J. Bosco, S. Lawrence, C. Christopher, S. Radhakrishnan, …
    🔢 Citations: 24
    📅 Year: 2015

  • 📘 Title: Exclusively explored electrochemical halogenation of aryl compounds; periodical updates: Since 2000
    ✍️ Authors: R. Jagatheesan, C. Christopher, P. Ramesh, S. Sambathkumar
    🔢 Citations: 14
    📅 Year: 2020

  • 📘 Title: Sodium salts mediated electrochemical reactions: Recent instances
    ✍️ Authors: V. Sathya, D. Gopi, R. Jagatheesan, C. Christopher
    🔢 Citations: 3
    📅 Year: 2023

  • 📘 Title: A novel biphasic electrolysis method for the oxidation of 4-methylbenzyl alcohol by in-situ generated hypochlorous acid using NaCl as electro catalytic mediator
    ✍️ Authors: A. John Bosco, S. Lawrence, C. Christopher, M. Bala, M. Easuraja, S. Raja
    🔢 Citations: 3
    📅 Year: 2013

  • 📘 Title: Effect of Electrode Materials in Decolorization of Dyestuffs from Wastewater
    ✍️ Authors: R. Jagatheesan, C. Christopher, K. Govindan
    🔢 Citations: 1
    📅 Year: 2023