Assoc. Prof. Dr. Luyi Chen – green innovation adoption – Best Researcher Award

Assoc. Prof. Dr. Luyi Chen - green innovation adoption - Best Researcher Award

Shanghai Research Center for Reform and Development of State-owned Assets and State-owned Enterprises - China 

Author Profile 

SCOPUS 

🎓 Early academic pursuits

Luyi Chen embarked on an academic journey with a deep commitment to sustainable development and industrial innovation. with a strong foundation in engineering and economic policies, he pursued research that bridged the gap between manufacturing and environmental sustainability. his early academic years were marked by a keen interest in green technologies and policy frameworks that drive sustainable industrial practices. his dedication to exploring innovative methods for reducing environmental impact laid the groundwork for his future contributions in the field of green manufacturing and industrial transformation.

🚀 Professional endeavors

As an associate researcher at the shanghai research center for reform and development of state-owned assets and state-owned enterprises, luyi chen has played a crucial role in shaping policies related to industrial development and sustainability. over the past five years, he has successfully led six major research projects, including the prestigious national natural science foundation of china programs. his work has contributed significantly to policy recommendations and innovative strategies for state-owned enterprises, driving forward china’s industrial modernization. his role as an editorial board member for the special issue of china engineering science and his involvement as a reviewer for top international journals reflect his influence in the field.

🧐 Contributions and research focus

Luyi Chen’s research is centered around green manufacturing, industrial policy, and innovation. his expertise in developing sustainable industrial solutions has led to the publication of over thirty research outputs, including high-impact journal articles and book chapters. his monograph, "transition and innovation of chinese manufacturing: practice and policy," stands as a green innovation adoption significant contribution to understanding the evolution of china’s industrial landscape. his research emphasizes the integration of cutting-edge technologies in industrial systems to enhance efficiency while minimizing environmental harm. through his work, he has successfully developed frameworks that facilitate the transition towards sustainable manufacturing.

🏆 Accolades and recognition

With a growing impact in academia, luyi chen has earned recognition for his research contributions. his citation index of 11 reflects the scholarly influence of his work, particularly in green innovation and industrial transformation. his appointment as an editorial board member and his role as a reviewer for prestigious journals such as the journal of cleaner production and green innovation adoption environmental innovation and societal transitions highlight his standing in the global research community. his work has received acknowledgment not only from academia but also from policymakers and industrial leaders striving for a sustainable future.

👨‍🎓 Impact and influence

Chen’s influence extends beyond academia into the industrial sector, where his research findings have informed policy decisions and practical implementations. his consultancy projects have facilitated industry-wide transitions towards environmentally friendly manufacturing processes. his innovative patents, including water-free and salt-free dyeing methods, have provided green innovation adoption sustainable solutions to the textile industry, reducing waste and environmental pollution. his work has played a key role in shaping industrial policies that support green technologies, ensuring a balance between economic growth and environmental responsibility.

🌍 Legacy and future contributions

As a leading researcher in green manufacturing and industrial development, luyi chen’s contributions continue to pave the way for sustainable industrial transformations. his future research aims to further explore policy innovations and technological advancements that can drive the next phase of industrial sustainability. by mentoring young researchers and fostering collaborations between academia, industry, and policymakers, he is building a legacy of innovation and environmental responsibility. his work will continue to influence the global discourse on sustainable industrial practices, leaving a lasting impact on future generations of researchers and industry leaders.

Notable Publications 

Title: Review of Antifouling Finishing of Textiles: Theme, Evolution and Fabrication Methods
Author(s): Fengmei Ding, Yali Guo, Qingmiao Wang, Zhiqi Xing, Luyi Chen
Journal: Journal of Donghua University (English Edition), 2024

Dr. Mehdi Mogharabi-Manzari  – Bioremediation – Best Researcher Award

Dr. Mehdi Mogharabi-Manzari  - Bioremediation - Best Researcher Award

Mazandaran University of Medical Sciences - Iran

Professional Profile

SCOPUS 

ORCID

Early Academic Pursuits

Mehdi Mogharabi-Manzari commenced his academic journey with a Bachelor of Science in Chemistry from Shahrood University of Technology, Shahrood, Iran (2002-2006). He then pursued a Master of Science in Chemistry at the University of Birjand, Birjand, Iran (2009-2011). His educational foundation culminated with a PhD from The Institute of Pharmaceutical Sciences, Tehran University of Medical Sciences, Tehran, Iran (2014-2019).

Professional Endeavors

Dr. Mogharabi-Manzari's teaching career began at Payam-e-Noor University of Khaf, where he lectured on Organic Chemistry, Spectroscopy in Organic Chemistry, and Physical Organic Chemistry (2011-2014). Later, he imparted his expertise on Techniques of Enzyme Immobilization & Applications at the Department of Pharmaceutical Biotechnology, Faculty of Pharmacy, Tehran University of Medical Sciences (2015-2016).

Contributions and Research Focus

Dr. Mogharabi-Manzari’s research focuses on enzyme immobilization, biocatalysis, and the synthesis and characterization of nanoparticles. His work extends to high-performance liquid chromatography, cell culture techniques, Bioremediation and antimicrobial activity tests. He has significant contributions in designing and synthesizing affinity supports, molecular simulations, and asymmetric organic synthesis.

Accolades and Recognition

Dr. Mogharabi-Manzari has been recognized for his innovative projects, winning awards at the 4th Festival of Technological Projects at Mazandaran University of Medical Sciences (2023), the 3rd Avicenna Student Festival of Tehran University of Medical Sciences (2016), Bioremediation and the 2nd International Festival on Research Thesis, Khayyam Award (2019).

Impact and Influence

Dr. Mogharabi-Manzari’s influence extends through his numerous publications and his role as a peer reviewer for prestigious journals like the Journal of Mazandaran University of Medical Sciences, Iranian Biomedical Journal, and Nanoscale. He serves on the editorial boards of several scientific journals, Bioremediation including the Journal of Modern Biology and Drug Discovery.

Legacy and Future Contributions

Dr. Mogharabi-Manzari’s legacy is built on his extensive research output, including 28 published articles and multiple book chapters. His patents on enzyme immobilization and molecularly imprinted polymer sensors highlight his innovative contributions to pharmaceutical sciences. His involvement in international conferences and workshops underscores his commitment to advancing the field of biocatalysis and nanotechnology.

NOTABLE PUBLICATIONS

Development of coumarin tagged 1,2,3-triazole derivatives targeting α-glucosidase inhibition   2023(6)

Safety of metal–organic framework nanoparticles for biomedical applications: An in vitro toxicity assessment  2023(5)

Recent advances in preparation of polymer hydrogel composites and their applications in enzyme immobilization  2023(5)

Phytochemical and Biological Effects of Acorus calamus (Acoraceae) in Traditional Medicine and Laboratory and Clinical 2023(1)

Nanoarchitectonics of Enzyme/Metal–Organic Framework Composites for Wastewater Treatment  2022(11)