Kaizhi Li | Organic Synthesis | Best Researcher Award

Assoc. Prof. Dr. Kaizhi Li | Organic Synthesis | Best Researcher Award

Assoc. Prof. Dr. Kaizhi Li, West China Hospital, Sichuan University, China.

Dr. Kaizhi Li is an accomplished Associate Professor at West China Hospital, Sichuan University, with a strong foundation in organic synthesis and catalytic reaction design. From his early academic training at Sichuan University to his impactful postdoctoral work at the National University of Singapore, Dr. Li has consistently contributed to the advancement of asymmetric catalysis and unsaturated bond transformations. Supported by prestigious funding bodies, his research continues to push the boundaries of efficient and sustainable chemical synthesis.

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šŸŽ“ Early Academic Pursuits

Kaizhi Li’s academic journey began with a passion for organic chemistry, which ultimately led him to pursue advanced studies at Sichuan University. He obtained his Ph.D. in 2016, where his research delved deeply into the challenging yet rewarding field of C(sp³)–H cross-dehydrogenative coupling reactions. This foundational work not only showcased his innovative thinking and mastery of complex molecular transformations but also laid the groundwork for a promising career in synthetic chemistry.

šŸŒ Professional Endeavors Abroad

Following his doctoral studies, Dr. Li expanded his academic horizons by joining the renowned research group of Professor Yixin Lu at the National University of Singapore. Between 2016 and 2020, he played a pivotal role in advancing asymmetric reactions using organic small molecule catalysts. His international experience helped broaden his perspective, refine his experimental skills, and deepen his understanding of catalytic systems at a global research frontier, making him a valuable contributor to the field.

šŸ”¬ Research Focus and Scientific Contributions

Upon returning to China, Dr. Li launched his independent research program at the prestigious West China Hospital of Sichuan University in 2020. His work is primarily centered on the efficient transformation of unsaturated bonds—a crucial area in organic synthesis with wide-ranging applications in pharmaceuticals and materials science. His innovative approaches aim to improve selectivity, sustainability, and functional group tolerance in catalytic reactions, pushing the boundaries of modern synthetic methodologies.

🧪 Breakthrough Projects and Funding Success

Dr. Li’s research excellence has been recognized and supported by significant funding bodies. He is currently leading key projects under the National Natural Science Foundation of China (Grant No. 22201190) and the Department of Science and Technology of Sichuan Province (2023NSFSC1088). These competitive grants underscore his growing influence in the field and his commitment to exploring transformative chemical reactions with real-world impact.

šŸ… Accolades and Recognition

Throughout his career, Dr. Li has earned recognition not only for his innovative chemistry but also for his dedication to academic leadership. His achievements in asymmetric catalysis and bond transformation have garnered the respect of peers both nationally and internationally. His ability to bridge fundamental research with applied science continues to earn him a place among the emerging leaders in synthetic organic chemistry.

šŸ’” Impact and Influence in Chemistry

Kaizhi Li’s research contributions have significantly influenced the direction of modern organic synthesis, particularly in sustainable catalytic strategies. His work provides valuable tools for the design of more efficient and selective synthetic pathways. By mentoring students and fostering collaborations, he continues to shape the next generation of chemists, creating a ripple effect that extends far beyond his own laboratory.

🌱 Legacy and Vision for the Future

Looking ahead, Dr. Li envisions expanding his research into new domains of catalysis and reaction design, with an emphasis on environmentally friendly and industrially relevant processes. His long-term goal is to build a world-class research team at Sichuan University that not only advances chemical science but also addresses global challenges in health, sustainability, and materials. His legacy is one of curiosity-driven innovation and a commitment to excellence in both research and mentorship.

Publication

  • Title: Three‐Component 1,2‐Methylamidation of Alkynes via Coordinating Activation Strategy
    Authors: Jing Ren, Kaiyun Liu, Ning Wang, Jinlong Li, Xinyu Long, Chengming Li, Kaizhi Li
    Year: 2025

 

  • Title: Coordinating activation strategy enables 1,2-alkylamidation of alkynes
    Authors: Jing Ren, Junhua Xu, Xiangxiang Kong, Jinlong Li, Kaizhi Li
    Year: 2023

 

  • Title: Transition-metal-free oxidative annulation reactions between N-acyl-2-aminoacetophenones and alkynes for the facile synthesis of 2-amino-1-naphthols
    Authors: Jing Ren, Kaiyun Liu, Xiangxiang Kong, Kaizhi Li
    Year: 2023

 

  • Title: Modular Synthesis of α-Aryl-α-Heteroaryl α-Amino Acid Derivatives via a Copper-Catalyzed Cross-Dehydrogenative-Coupling Reaction Using Air as the Sole Oxidant
    Authors: Xiangxiang Kong, Jing Ren, Jinlong Li, Yu Liu, Kaizhi Li
    Year: 2023

 

  • Title: Copper-Catalyzed 1,2-Difunctionalization Trifluoromethylamidation of Alkynes Assisted by a Coordinating Group
    Authors: Jing Ren, Kaiyun Liu, Ning Wang, Xiangxiang Kong, Jinlong Li, Kaizhi Li
    Year: 2023

 

  • Title: Dearomatization of Nitro(hetero)arenes through Annulation
    Authors: Ning Wang, Jing Ren, Kaizhi Li
    Year: 2022

 

šŸ”š Conclusion

Dr. Li’s journey reflects a blend of academic excellence, international collaboration, and visionary research. His work not only contributes significantly to the field of synthetic chemistry but also inspires a new generation of scientists. As he continues to innovate and mentor, Dr. Kaizhi Li is poised to leave a lasting legacy in the realm of chemical sciences, both in China and across the global scientific community.

Tarnveer Kaur | Physical Chemistry | Women Researcher Award

Assist.prof.Dr.Tarnveer Kaur | Physical Chemistry | Women Researcher Award

Assist. Prof. Dr. Tarnveer Kaur, SGGSWU Fatehgarh Sahib, Punjab,India.

Dr. Tarnveer kaur is an accomplished assistant professor in the department of chemistry at sri guru granth sahib world university, india. with a strong background in physical chemistry, she completed her m.phil. and phd at punjabi university, patiala. her research focuses on thermodynamic investigations of protein model compounds and ionic liquid solutions, with a particular interest in molecular interactions and thermophysical properties. she has published extensively in high-impact journals, contributed to various international and national conferences, and has made significant strides in the study of ionic liquids, buffer solutions, and amino acids. her academic career is marked by her roles as both a researcher and educator, having taught at multiple institutions and mentored students in the field of chemistry.

 

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Scholar

early academic pursuits šŸŽ“

Dr. tarnveer kaur’s academic journey began with a solid foundation in chemistry, earning her bachelor’s and master’s degrees from punjabi university, patiala, india. her passion for physical chemistry led her to pursue an m.phil. in the same field, where she focused on volumetric studies of glycine with aqueous succinic acid and sodium succinate buffer solutions at different temperatures. this academic pursuit deepened her interest in thermodynamics, setting the stage for her later research contributions. in 2016, she embarked on her phd journey at punjabi university, where she specialized in the thermodynamic investigations of protein model compounds in aqueous ionic liquid solutions under the supervision of dr. poonam patyar.

professional endeavors šŸ«

Dr. kaur is currently an assistant professor in the department of chemistry at sri guru granth sahib world university, fatehgarh sahib, punjab, india. her teaching career also includes roles as a faculty member at punjabi university, patiala, where she taught statistical thermodynamics to postgraduate students. with a passion for both teaching and research, she has contributed to the academic growth of her students while advancing her research in the field of physical chemistry.

contributions and research focus šŸ”¬

Dr. kaur’s research contributions have made significant impacts in the field of physical chemistry, particularly in the study of molecular interactions and thermodynamic properties of various compounds. her research work has focused on the synthesis of imidazolium ionic liquids, buffer solutions, organic acids, amino acids, and thermodynamic parameters. she has employed techniques such as density, viscosity, FTIR, UV-visible, and TGA to investigate the interactions between these substances. dr. kaur has published several papers in reputed journals, including the journal of chemical thermodynamics and journal of molecular liquids, contributing to the understanding of thermophysical properties in chemical systems.

accolades and recognition šŸ…

throughout her career, dr. kaur has been recognized for her research and academic achievements. her work has been published in high-impact journals, earning her recognition in the global scientific community. she has presented her research at numerous international and national conferences, including the 14th global conference on catalysis and the 24th iscb international conference. her contributions to science have not only been acknowledged through publications and conference presentations but also through her membership in prestigious organizations like the indian thermodynamic society and the american chemical society.

impact and influence šŸŒ

Dr. kaur’s research and teaching have had a lasting influence on both the scientific community and the academic institutions she has been a part of. her expertise in ionic liquids, thermodynamic studies, and molecular interactions has contributed to the advancement of knowledge in the field of physical chemistry. she has also inspired many students through her teaching and research guidance, preparing them for careers in science and research. her work as a reviewer, editor, and conference moderator has further solidified her reputation as an influential figure in the field of chemistry.

legacy and future contributions šŸ”®

Dr. tarnveer kaur’s legacy lies in her dedication to advancing the understanding of physical chemistry and her contributions to the development of new chemical systems, particularly in the study of ionic liquids and their applications. looking ahead, she aims to continue her research in the field of molecular interactions and thermodynamics while exploring new frontiers in materials science and nanotechnology. her ongoing commitment to teaching, research, and scientific collaboration ensures that she will continue to make valuable contributions to the field and inspire future generations of scientists.

šŸ“š Publications

  • Volumetric behavior of glycine in aqueous succinic acid and sodium succinate buffer at different temperatures
    Authors: G Singh, P Patyar, T Kaur, G Kaur
    Year: 2016

 

  • Molecular interactions of some amino acids in aqueous 1-butyl-3-methylimidazolium bromide solutions at different temperatures: A volumetric approach
    Authors: P Patyar, T Kaur, O Sethi
    Year: 2018

 

  • Volumetric Investigations on Molecular Interactions of Glycine/L-alanine in Aqueous Citric Acid Solutions at Different Temperatures
    Authors: P Patyar, G Kaur, T Kaur
    Year: 2018

 

  • Transport behaviour and FT-IR study of some protein model compounds + 1-butyl-3-methylimidazolium bromide mixtures at different temperatures
    Authors: P Patyar, T Kaur
    Year: 2022

 

  • Impact of BMImCl on the thermophysical and FTIR properties of protein model compounds in aqueous solutions
    Authors: T Kaur, P Patyar
    Year: 2023

 

  • Volumetric studies for glycine in aqueous L-tartaric acid to find intermolecular interactions at different temperatures along with FTIR and thermal stability
    Authors: T Kaur, P Patyar, M Patyal
    Year: 2024

Conclusion

Dr. Tarnveer kaur has made significant contributions to the field of physical chemistry through her extensive research and academic achievements. her work has enhanced the understanding of molecular interactions and thermodynamic properties, particularly in relation to ionic liquids. her academic journey, coupled with her dedication to teaching and research, has earned her recognition within the scientific community. looking to the future, dr. kaur’s ongoing research and commitment to education promise continued contributions to both science and the next generation of chemists. her legacy in the field will undoubtedly inspire future advancements in physical chemistry.