Mr. Guangyao Li | adsorption | Best Researcher Award

Mr. Guangyao Li | adsorption | Best Researcher Award

kyushu university, Japan

Author Profile

Scopus

🌱 Early Academic Pursuits

Lee Kuan Yew’s journey in academia began with a strong foundation in engineering, a field that combines creativity, problem-solving, and technical knowledge. Hailing from Xinxiang, Henan, he pursued his undergraduate studies at Henan Polytechnic University, where he earned a Bachelor of Engineering in Mechanical Design. His education in this institution laid the groundwork for his understanding of core mechanical concepts, including Engineering Thermodynamics, Mechanical Design, and Automation Technology. These formative years instilled in him a profound appreciation for the principles of mechanics and thermodynamics, which would later become central to his research.

Driven by an unrelenting desire for advanced knowledge, Lee Kuan Yew furthered his studies at Zhengzhou University, a prestigious Double First-Class institution, where he earned a Master of Engineering in Power Engineering. His curriculum covered a wide range of subjects, from Advanced Heat Transfer and Fluid Mechanics to Numerical Analysis and Industrial Energy Management. These courses equipped him with both theoretical insights and practical skills, making him proficient in the nuances of energy systems. His academic prowess and enthusiasm for research led him to pursue a Ph.D. in Mechanical and System Engineering at Kyushu University in Japan, sponsored by the China Scholarship Council (CSC). At this renowned institution, he delved into complex topics like Thermal Energy Utilization Systems and Numerical Fluid Mechanics, honing his expertise in thermal engineering.

🚀 Professional Endeavors

Lee Kuan Yew’s professional journey has been marked by diverse and impactful experiences. Since 2022, he has been actively involved in the development of adsorption refrigeration and heat pump systems at Mitsubishi Electric Corporation. His role has been pivotal in designing and constructing a fixed-volume adsorption isotherm measurement device and analyzing the adsorption characteristics of materials for refrigerants like R245fa. This work not only refined his technical skills but also positioned him at the forefront of sustainable energy technology.

His expertise in adsorption technology further extended to collaborative research with ENEOS from 2022 to 2024, where he investigated the absorption characteristics of novel compressor oils and refrigerants under varying pressures and temperatures. His meticulous data collection and analysis contributed significantly to the development of advanced energy systems.

Lee Kuan Yew also played a critical role in a groundbreaking project with NEDO, focusing on carbon dioxide capture, storage, and utilization. Here, he developed a CO₂ absorption characteristic measurement device and formulated a mathematical model to analyze the absorption behavior of CO₂ using an amino + ether phase change solution. This work underscored his commitment to tackling global environmental challenges.

🔬 Contributions and Research Focus

Throughout his career, Lee Kuan Yew has made substantial contributions to the field of thermal energy and environmental technology. His research primarily revolves around adsorption heat pumps, absorption technology, and carbon capture. Notably, he has been involved in the development of high-performance adsorbents derived from biomass for carbon capture, merging experimental work with molecular simulations to optimize efficiency.

His research on adsorption heat pumps, including the development of a metal roller anti-stick coating for industrial applications, has showcased his ability to bridge theory with practice. Moreover, his work on fly ash-based zeolite synthesis, funded by the Henan Provincial Department of Science and Technology, demonstrated his dedication to sustainable material development.

Lee Kuan Yew has also authored several academic publications, including a paper on “Superhydrophobic Surface-modified Zeolite to Regulate the Migration of Nonadsorbed Liquid Water in an Open-loop Adsorption Heat Pump,” published in Applied Thermal Engineering. His other work on “Performance Improvement of Waste Heat Upgrading Adsorption Heat Pump by Employing Copper Oxide-Loaded Composite Zeolites for High-Temperature Steam Generation” is currently under review, further highlighting his ongoing commitment to advancing thermal engineering.

🏆 Accolades and Recognition

Lee Kuan Yew’s dedication to excellence has earned him numerous awards and recognitions. In 2021, he was honored as an Excellent Volunteer for Flood Control by the Henan Provincial Civilization Committee, a testament to his sense of responsibility and commitment to community welfare. During the COVID-19 pandemic, he received a Commendation for Fighting the Epidemic from the Communist Youth League of Xinxiang Municipal Committee, recognizing his willingness to serve during challenging times.

His academic excellence has also been acknowledged through scholarships awarded by the Henan Provincial Department of Education (2019-2022) and a Third Prize at the Zhengzhou University Graduate Innovation Competition in 2021. These honors not only reflect his intellectual abilities but also his perseverance and dedication.

🌐 Impact and Influence

Lee Kuan Yew’s work has had a profound impact on the field of thermal energy, particularly in the development of sustainable energy solutions. His research on adsorption heat pumps and carbon capture has the potential to revolutionize energy systems, making them more efficient and environmentally friendly. His active participation in industrial projects with Mitsubishi Electric Corporation and ENEOS has enabled him to bridge the gap between theoretical research and practical applications, creating technologies that can directly benefit society.

Moreover, his academic publications have enriched the scientific community’s understanding of adsorption and absorption processes, providing a foundation for future research in the field. His expertise in computational tools such as Material Studio, CAD, SolidWorks, and Comsol further enhances his ability to drive innovation.

🌟 Legacy and Future Contributions

As a young scholar and engineer with a passion for sustainability, Lee Kuan Yew’s journey is far from over. His continuous pursuit of excellence in research and his ability to translate complex scientific concepts into real-world solutions position him as a promising leader in the field of thermal energy. Moving forward, he aims to explore new frontiers in energy conversion and environmental technology, contributing to a greener, more sustainable world.

📝Notable Publications

Performance Improvement of Waste Heat Upgrading Adsorption Heat Pump by Employing Copper Oxide-Loaded Composite Zeolites for High-Temperature Steam Generation

Authors: G. Li (Guangyao), B. Xue (Bing), H. Yu (Hao), K. Thu (Kyaw), T. Miyazaki (Takahiko)
Journal: Colloids and Surfaces A: Physicochemical and Engineering Aspects
Year: 2025

Dr. Yiyuan Zheng | Healthcare | Best Researcher Award

Dr. Yiyuan Zheng | Healthcare | Best Researcher Award

Shanghai Municipal Hospital of Traditional Chinese Medicine, China

Author Profile

Scopus

🌱 Early Academic Pursuits

Dr. Yiyuan Zheng’s journey into the world of medicine began with a strong foundational education in traditional Chinese medicine (TCM). Driven by a deep curiosity about the ancient wisdom of herbal remedies and natural healing, Dr. Zheng pursued higher education in TCM, laying a robust academic foundation. Her passion for blending tradition with modern science was evident from the outset, as she immersed herself in both classical texts of Chinese medicine and emerging scientific research.

🏥 Professional Endeavors

Dr. Zheng serves as an associate researcher and associate professor at Shanghai Municipal Hospital of Traditional Chinese Medicine, where she seamlessly bridges clinical practice with research. Her dual roles allow her to not only guide patients towards better health through TCM techniques but also to explore and validate these techniques through rigorous scientific investigation. Her professional journey is marked by a commitment to enhancing the understanding and application of TCM for chronic metabolic diseases, particularly fatty liver and obesity.

🔬 Contributions and Research Focus

A defining aspect of Dr. Zheng’s work is her focus on the integrative application of traditional Chinese medicine techniques, including herbal tea formulations, aromatherapy, and acupoint embedding. Her research primarily targets the prevention and treatment of chronic metabolic diseases such as fatty liver disease and obesity. Notably, she has conducted extensive clinical and foundational research on the efficacy of traditional Chinese herbal tea in addressing metabolic dysfunction-related fatty liver disease. This work has provided valuable insights into the therapeutic potential of herbal medicine, bridging the gap between traditional practices and modern healthcare.

🏆 Accolades and Recognition

Dr. Zheng’s dedication to TCM research has earned her recognition within the medical community. As an associate professor and researcher at a prestigious institution, she has established herself as an expert in the field. Her contributions have been acknowledged through various academic and professional accolades, and she is frequently invited to share her insights at national and international conferences, contributing to the global understanding of TCM.

🌐 Impact and Influence

Beyond her direct research contributions, Dr. Zheng’s work has significantly impacted the field of TCM, particularly in the area of metabolic diseases. By validating the efficacy of traditional techniques through clinical research, she has strengthened the credibility of TCM within modern medical practice. Her research has also informed clinical guidelines, benefiting countless patients suffering from chronic metabolic disorders.

🌟 Legacy and Future Contributions

Dr. Yiyuan Zheng’s commitment to advancing traditional Chinese medicine is evident in her ongoing research and patient care. As she continues to explore the integrative application of TCM for metabolic health, her work is poised to further enhance the understanding of how ancient wisdom can complement modern medicine. Her legacy will be defined by her contributions to evidence-based TCM practice, her role in educating the next generation of TCM practitioners, and her unwavering dedication to patient well-being.”)

📝Notable Publications

📄 Ursolic Acid Modulates Estrogen Conversion to Relieve Inflammation in Metabolic Dysfunction-associated Steatotic Liver Disease via HSD17B14

Authors: Simin Gu, Hui Zhang, Zhekun Xiong, Yiyuan Zheng, Yong Li

Journal: Journal of Clinical and Translational Hepatology

Year: 2025

📄 Research Progress on the Molecular Mechanisms of Saikosaponin D in Various Diseases (Review)

Authors: Simin Gu, Yiyuan Zheng, Chong Chen, Jing Liu, Yanping Wang, Junmin Wang, Yong Li

Journal: International Journal of Molecular Medicine

Year: 2025

Soumitra Ghorai-Innovative Leadership-Best Researcher Award

Congratulations, Soumitra Ghorai- Innovative Leadership-Best Researcher Award - Award Winner 2023🏆

Dr.Soumitra Ghorai- Innovative Leadership

Congratulations to Dr. Soumitra Ghorai on receiving the Best Researcher Award for Innovative Leadership! Your dedication to groundbreaking research and leadership in the field of polymer chemistry and nanomaterial synthesis is truly commendable. Wishing you continued success and impactful contributions to the world of science and technology. Well done!

Professional Profile 

Google Scholar
Orcid
Scopus

Early Academic Pursuits

Dr. Soumitra Ghorai commenced his academic journey with a Bachelor's degree in Chemistry from Panskura Banamali College, Midnapore, in 2008. His pursuit of knowledge continued as he earned a Master's degree in Organic Chemistry from Vidyasagar University, Midnapore, in 2010. Driven by a passion for scientific exploration, he went on to achieve a Ph.D. in Polymer Chemistry from the prestigious Indian School of Mines, Dhanbad, in 2015.

Professional Endeavors

Dr. Ghorai's professional journey is marked by a dedication to cutting-edge research and innovation. He began as a Junior Research Fellow at the Indian School of Mines, Dhanbad, contributing to the synthesis of modified bio-polymer-based silica nanocomposite material for wastewater treatment. Subsequently, as a Senior Research Fellow, he delved into multifunctional bio-polymer-based hybrid composite material for wastewater and industrial effluent treatment.

Transitioning to the industrial domain, Dr. Ghorai brought his expertise to Tata Steel, R&D, focusing on advanced coal characterization techniques, polymeric additive synthesis in coke making, and the development of graphene quantum dots from coal/graphite for biomedical applications from 2015 to 2020. In his current role as Principal Researcher, he continues to lead significant projects in areas such as industrial byproduct-based polymeric additives, advanced characterization of carbon fiber precursor material, and the synthesis of graphene quantum dots from steel industry by-products.

Contributions and Research Focus

Dr. Ghorai's expertise encompasses polymer synthesis, carbon nanomaterial synthesis, advanced characterization of carbon-based materials, and industrial byproduct utilization. His current projects involve the development of polymeric additives for coke making, the synthesis of graphene quantum dots from industrial byproducts, and the advanced characterization of carbon fiber precursor material. His research interests span lab-scale synthesis and applications of graphene quantum dots, graphene-based composite materials, and carbon fiber composites.

Accolades and Recognition

With an impressive track record, Dr. Ghorai has garnered recognition in the academic and industrial spheres. His Google Scholar citation count stands at 2116, with an h-index of 19 and an i10-index of 20 as of December 10, 2023. Furthermore, he holds several patents, including the development and application of an amphoteric xanthan gum/SiO2 hybrid nanocomposite for dye removal.

Impact and Influence

Dr. Soumitra Ghorai's research has made a significant impact, especially in the field of graphene quantum dots and carbon-based materials. His patented innovations and numerous research publications attest to the relevance and applicability of his work in real-world scenarios.

Legacy and Future Contributions

As a Principal Researcher at Tata Steel, Dr. Ghorai continues to contribute to the scientific community and the industrial sector. His legacy lies in the advancements he has pioneered in the synthesis and application of materials, particularly in the context of sustainable industrial practices. Looking forward, his commitment to research and development promises further groundbreaking contributions to the fields of polymer chemistry, nanomaterials, and carbon-based technologies.

Notable Publications 

Enhanced removal of methylene blue and methyl violet dyes from aqueous solution using a nanocomposite of hydrolyzed polyacrylamide grafted xanthan gum and incorporated nanosilica (504), 2014

Effective removal of Congo red dye from aqueous solution using modified xanthan gum/silica hybrid nanocomposite as adsorbent (251), 2013

Flocculation properties of polyacrylamide grafted carboxymethyl guar gum (CMG-g-PAM) synthesised by conventional and microwave assisted method (177), 2011

Novel biodegradable nanocomposite based on XG-g-PAM/SiO2: application of an efficient adsorbent for Pb2+ ions from aqueous solution (170), 2012

Carboxymethyl tamarind-g-poly (acrylamide)/silica: a high performance hybrid nanocomposite for adsorption of methylene blue dye (140), 2012

Citation

A total of  83 citations for his publications, demonstrating the impact and recognition of his research within the academic community.

Citations      2118   1440

h-index        19          19
i10-index     20          20