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

Mr. Adem Tuncer | organ transplantation | Best Researcher Award

Mr. Adem Tuncer | organ transplantation | Best Researcher Award

Istanbul Aydin University, Turkey

Author Profile

Orchid

Early Academic Pursuits 🎓

Adem Tunçer’s journey in medicine began with a passion for surgical excellence and a dedication to improving patient outcomes. Born on January 5, 1989, he embarked on his medical education with a vision to contribute meaningfully to healthcare. His early academic years were marked by rigorous training, extensive research, and a keen interest in general surgery.

During his medical studies, Tunçer displayed a strong inclination toward surgical interventions, particularly in complex cases involving hepatic and trauma-related conditions. His inquisitive nature led him to delve deeper into the physiological responses of patients undergoing critical procedures. This curiosity later shaped his academic focus, culminating in his thesis, Evaluation of the Trauma Stress Response in Hepatitis B Patients Undergoing Living Donor Liver Transplantation: A Prospective Case-Control Study (2021). This research was pivotal in understanding how trauma-induced stress affects patients with pre-existing hepatic conditions, providing valuable insights into surgical risk management.

Professional Endeavors 🏥

Upon completing his medical training, Tunçer began his professional career as a General Practitioner at Palu State Hospital (2014–2016). Here, he honed his diagnostic and patient management skills, gaining firsthand experience in addressing a wide range of medical conditions. His tenure at Palu State Hospital reinforced his decision to specialize in surgery, leading him to pursue further academic and professional opportunities.

His next phase involved research-focused roles, first at Ahi Evran University (2016–2017) and later at Inonu University (2017–2022). These years were instrumental in shaping his approach to evidence-based surgery. As a Research Assistant, he contributed to multiple studies focusing on surgical interventions, patient recovery, and the physiological impacts of trauma. Working in an academic environment allowed him to collaborate with leading experts in general surgery, further refining his technical skills and research acumen.

After years of dedicated research and training, Tunçer transitioned into specialist roles. He served as a Specialist Doctor at Tatvan State Hospital (2022–2023) and Bitlis State Hospital (2023–2024), where he performed complex surgical procedures, mentored junior doctors, and actively contributed to hospital-wide surgical advancements. His role in these institutions showcased his ability to integrate research findings into practical applications, ensuring improved surgical outcomes.

In 2024, Tunçer joined Florya Medical Park Hospital, a significant step in his career. Here, he continues to apply his extensive experience in general surgery, focusing on cutting-edge surgical techniques, patient safety, and innovative treatment protocols. His work at Florya Medical Park Hospital not only enhances patient care but also sets a benchmark for surgical excellence in the region.

Contributions and Research Focus 🔬

Tunçer’s research has been pivotal in bridging the gap between surgical practice and academic inquiry. His thesis on the trauma stress response in Hepatitis B patients has contributed to a better understanding of how pre-existing liver conditions influence post-surgical recovery. This study has implications for both surgical planning and postoperative care, helping healthcare professionals adopt more tailored approaches to patient management.

Beyond his thesis, Tunçer has been involved in various research projects focusing on general surgical procedures, patient recovery strategies, and the role of innovative surgical techniques in reducing complications. His contributions to medical literature continue to inform best practices in the field, ensuring that both current and future surgeons benefit from his findings.

Accolades and Recognition 🏅

Throughout his career, Tunçer has earned the respect of colleagues and medical institutions alike. His dedication to surgical excellence, patient-centered care, and academic contributions have made him a distinguished figure in general surgery. His work has been acknowledged in medical conferences and academic circles, further solidifying his reputation as a leader in the field.

His tenure in multiple hospitals has also earned him recognition for his commitment to improving surgical protocols. Whether through mentorship, research, or direct patient care, his influence extends beyond the operating room. The impact of his studies on hepatic surgery, in particular, has been recognized by peers who seek to implement his findings in their own surgical practices.

Impact and Influence 🌍

Tunçer’s influence extends beyond his immediate professional circle. His work serves as a guiding light for aspiring surgeons, demonstrating the importance of combining clinical practice with research. By integrating scientific inquiry with hands-on surgical experience, he has inspired a new generation of medical professionals to pursue knowledge-driven approaches to patient care.

His impact is also evident in the institutions he has served. Through his contributions, hospitals have enhanced their surgical capabilities, improved patient outcomes, and refined their research methodologies. His presence at Florya Medical Park Hospital marks a new chapter in his career, one where his expertise can further shape surgical advancements on a larger scale.

Legacy and Future Contributions 🌟

As Tunçer continues his journey in the field of general surgery, his legacy is already taking shape. His commitment to excellence, passion for research, and dedication to patient welfare position him as a key figure in the medical community. Looking ahead, he aims to expand his research on surgical stress responses, explore new surgical methodologies, and contribute to medical education by mentoring future surgeons.

His future contributions may also involve collaborative research projects, international surgical training programs, and further innovations in hepatic surgery. As the medical landscape evolves, his expertise will remain invaluable in advancing surgical knowledge and improving healthcare standards.

Through his unwavering dedication, Adem Tunçer is not just a surgeon but a trailblazer in the field—someone whose work continues to inspire and benefit both patients and fellow medical professionals.

📝Notable Publications

Living Donor Liver Transplantation for Iatrogenic Vascular Injury During Laparoscopic Cholecystectomy: Case Report

Author: Adem Tunçer, Canan Dilay Dirican, Emrah Sahin, Veysel Ersan, Bulent Unal, Abuzer Dirican

Journal: Transplantation Proceedings

Year: 2025

Management of Gallbladder Perforation: A Single Center Clinical Experience

Author: Adem Tunçer, Zeki Öğüt, Ertuğrul Karabulut

Journal: Harran Üniversitesi Tıp Fakültesi Dergisi

Year: 2025

Effect of Bile on Fatty Liver and Metabolism in Rats

Author: Mehmet Zeki Ogut (including Adem Tunçer)

Journal: Journal of Inonu Liver Transplantation Institute

Year: 2024

Living Donor Liver Transplantation in Patients with Crigler-Najjar Syndrome Type 1: Report of Three Cases

Author: Hasret Ayyildiz Civan (including Adem Tunçer)

Journal: Journal of Inonu Liver Transplantation Institute

Year: 2024

Re-Transplantation in a Pediatric Patient with Hepatorenal Syndrome: A Case Report

Author: Adem Tunçer

Journal: Journal of Inonu Liver Transplantation Institute

Year: 2024

Prof. Fanxiu Chen | Intenational Material Scientist Awards | Best Researcher Award

Prof. Fanxiu Chen | Intenational Material Scientist Awards | Best Researcher Award

Qingdao University of Technology,China

Profile

Scopus 

Early Academic Pursuits ✨

Fanxiu Chen’s journey in academia began with a strong foundation in mechanical engineering, where she cultivated a deep interest in experimental mechanics and material behavior analysis. Her early academic years were characterized by a curiosity for understanding the intrinsic properties of materials and their response to external forces. She pursued her studies with an unwavering commitment to scientific discovery, delving into the complexities of optomechanical methods and their applications. Recognizing the need for advanced measurement techniques, she dedicated herself to exploring novel methodologies for analyzing mechanical properties, setting the stage for her future contributions to the field.

Professional Endeavors 👩‍🎓

As a professor and doctoral supervisor, Fanxiu Chen has played a pivotal role in advancing experimental mechanics and testing technology. Her professional journey has been marked by active participation in esteemed committees, including the Professional Committee of Experimental Mechanics of the Chinese Mechanical Society and the Professional Committee of Testing Technology of the Production Engineering Branch of the Chinese Mechanical Engineering Society. She has also been recognized as a young expert of Taishan Scholars in Shandong Province. Her work has bridged the gap between theoretical research and practical applications, particularly in the safety assessment and monitoring of major infrastructure projects in coastal environments.

Her research focuses on developing high-precision optical non-contact detection technologies to enhance the reliability of concrete infrastructure. By integrating modern optomechanical methods with structural health monitoring, she has provided groundbreaking insights into material degradation, damage evaluation, and safety diagnostics. Through collaboration with interdisciplinary teams, she has successfully translated her findings into real-world applications, benefiting large-scale engineering projects across the globe.

Contributions and Research Focus 🔬

At the core of Fanxiu Chen’s research lies a dedication to improving the durability and longevity of reinforced concrete structures, particularly those exposed to harsh coastal environments. She has led systematic investigations into the microstructural evolution of concrete, analyzing how factors such as multi-ion coupling, steel corrosion, and environmental stressors influence material integrity. Her work has provided a scientific basis for predicting the service life of reinforced concrete structures, offering innovative solutions for mitigating structural degradation.

One of her most notable contributions is the development of a seamless multi-camera 3D-DIC method, which allows for high-precision real-time monitoring of structural performance. Additionally, she has pioneered the use of an underwater non-contact camera array for rapid assessment of damage in submerged structures. These technological advancements have revolutionized the way engineers approach infrastructure maintenance, enabling early detection of vulnerabilities and informed decision-making.

Her research has also yielded significant advancements in steel corrosion analysis. By establishing theoretical models for corrosion expansion forces under various environmental conditions, she has shed light on the relationship between corrosion-induced stress and surface strain in concrete. Her findings have been widely recognized, including the selection of her work as a highly cited ESI paper. Furthermore, her contributions to reducing steel reinforcement expansion forces have had a tangible impact on enhancing structural resilience.

Accolades and Recognition 🏆

Fanxiu Chen’s exemplary contributions have earned her numerous prestigious accolades, solidifying her reputation as a leading researcher in her field. She was among the first to be selected for the “Shandong Provincial Plan for the Introduction of Young Creative Talents in Colleges and Universities” in 2019. Her team’s research has resulted in the authorization of 10 domestic and international patents and the publication of three academic monographs and textbooks.

Her groundbreaking work has not only garnered recognition in academia but also in industry. The high-precision optical non-contact detection technology she developed has been successfully commercialized in partnership with major enterprises, including Dantec in Germany and leading companies in Shenzhen and Nanjing. The widespread adoption of her technology in over 20 countries, including the United Kingdom, the United States, and Canada, attests to the global impact of her innovations.

Her influence extends beyond research, as she has played a crucial role in mentoring the next generation of engineers and researchers. Under her guidance, her students have achieved remarkable success, winning national scholarships, provincial excellence awards, and recognition for innovation. Her dedication to fostering young talent has solidified her legacy as both a scholar and a mentor.

Impact and Influence 🌍

The impact of Fanxiu Chen’s research is far-reaching, with practical applications in critical infrastructure projects such as Qingdao Metro, Qinglian Railway, and Jiaozhou Bay Subsea Tunnel. Her contributions have been instrumental in ensuring the structural integrity of these projects, leading to prestigious awards such as the Luban Award and the National Quality Engineering Award.

Beyond engineering applications, her work has contributed significantly to the field of experimental mechanics, providing a deeper understanding of material behavior under complex environmental conditions. Her research has influenced policy-making in infrastructure safety, guiding best practices for maintenance and rehabilitation strategies. The economic and social benefits of her contributions are evident, with newly added sales revenue from her industrialized technologies surpassing 1.2 billion yuan in the past two years alone.

Legacy and Future Contributions 🌟

Looking ahead, Fanxiu Chen remains dedicated to pushing the boundaries of material science and structural health monitoring. Her future endeavors include further refining high-precision monitoring technologies and expanding the application of artificial intelligence in predictive maintenance. She envisions developing an intelligent, data-driven platform for real-time infrastructure monitoring, integrating machine learning algorithms to enhance predictive capabilities.

As a trailblazer in her field, she continues to inspire future researchers and engineers, advocating for a proactive approach to structural safety. Her unwavering commitment to scientific exploration, technological innovation, and knowledge dissemination ensures that her contributions will shape the landscape of engineering and material science for generations to come.

📝Notable Publications

 Effects of water-cement ratio and particle diameter on the mechanical properties of cement paste particles

Author: Z. Qiu, Ziming; F. Chen, Fanxiu; Y. Yu, Yang; X. Wang, Xiao; Y. Wang, Yuan
Journal: Optics and Lasers in Engineering
Year: 2025

Structural properties and mechanical behavior of three-dimensional cylindrical particle-like systems under in situ loading

Author: Y. Gu, Yanji; F. Chen, Fanxiu; Y. Yu, Yang; J. Liu, Jinglan; Z. Qiu, Ziming
Journal: Powder Technology
Year: 2025

Contact force calculation and evolution analysis of granular systems based on micro-CT experiment

Author: X. Wang, Xiao; S. Song, Shiqi; Z. Ping, Zijian; X. Shang, Xianyi; F. Chen, Fanxiu
Journal: Wuli Xuebao/Acta Physica Sinica
Year: 2025

Quasi-static modeling of a cable-driven continuum manipulator considering non-smooth cable-hole friction and experimental verification

Author: S. Zhang, Shucui; J. Zhao, Jiayuan; X. Zhang, Xingang; H. Peng, Haijun; C. Liu, Caishan
Journal: Mechanism and Machine Theory
Year: 2024

Manoj Gupta -Engineering & Technology-Best Researcher Award 

Dr. Manoj Gupta -Engineering & Technology-Best Researcher Award 

Guru  Ghasidas Vishwavidyalaya-India 

Author Profile 

Early Academic Pursuits:

Dr. Manoj Gupta embarked on his academic journey with a solid foundation in engineering. He earned his B.Tech degree from M.J.P. Rohilkhand University Campus, Bareilly (U.P), India. Following this, he pursued his M.Tech at H.N.B Garhwal Central University, Uttarakhand, India, showcasing a commitment to higher education. His academic pursuits culminated with a Ph.D. from the University of Rajasthan, Jaipur (India), further solidifying his expertise in his chosen field.

Professional Endeavors:

With over 18 years of experience, Dr. Manoj Gupta has contributed significantly to academia and research. Currently serving as an Associate Professor in the Department of Electronics and Communication Engineering at Guru Ghasidas Vishwavidyalaya, Bilaspur (Chhattisgarh), India, he plays a pivotal role in shaping the educational landscape.

Contributions and Research Focus:

Dr. Gupta's research interests span a wide array of cutting-edge fields, including Wireless and Multimedia Communication, Biomedical Image & Signal Processing, Soft Computing, Intelligent Computing, Computational Intelligence, Internet of Things (IoT), Artificial Intelligence & Machine Learning, Healthcare Informatics, and Embedded Systems. His prolific contributions include over 60 research papers in international journals, National/International conferences, and book chapters. Notably, he holds two patent grants and has published five patents, showcasing his innovative prowess.

Accolades and Recognition:

Dr. Manoj Gupta's contributions have not gone unnoticed. His editorial roles include being the Editor in Chief (EiC) of several prestigious book series published by Scrivener (John Wiley), CRC Press, Taylor and Francis, and Apple Academic Press in the USA. Recognition from Marquis Who’s Who in Science and Engineering® and Marquis Who’s Who in the World® in the USA further highlights his standing in the academic community.

Impact and Influence:

Dr. Gupta's impact extends beyond publications. He has served as a Technical Programme Committee (TPC) Member and Reviewer in various international conferences, contributing to the dissemination of knowledge and advancements in his field. Invitations as a Keynote Speaker/Invited Speaker at international conferences in Singapore and China underscore his influence and expertise.

Legacy and Future Contributions:

As an established figure in academia, Dr. Manoj Gupta's legacy is marked by his dedication to research, education, and innovation. His leadership in editorial roles, contributions to conferences, and extensive research output pave the way for future generations. With a robust foundation in multiple domains, his ongoing work promises to shape the landscape of Wireless Communication, Signal Processing, and related fields.

Notable Publications: