Dr. Jiasheng Fang | Pollution control | Best Researcher Award
Associate Research Fellow at Dongguan University of Technology, China.
Dr. Jiasheng Fang is an associate researcher in the School of Environment and Civil Engineering at Dongguan University of Technology π±π¬. He earned his Ph.D. in Chemical Engineering and Technology from Southeast University in 2018 π. Dr. Fangβs research focuses on the development of functional nanomaterials and their applications in pollutant remediation, waste resource utilization, and clean energy πβ‘. With over 30 peer-reviewed publications π and four national invention patents π , he has made significant contributions to sustainable materials science. His work is supported by prestigious grants, including the National Natural Science Foundation of China and the Guangdong Basic Research Foundation π‘.
Professional Profiles
Education 
Dr. Fang completed his Ph.D. in Chemical Engineering and Technology at Southeast University in 2018 π, where he developed advanced nanomaterials for environmental applications. Prior to this, he earned his masterβs and bachelorβs degrees, excelling in research on catalytic efficiencies and environmental technologies ππ‘. His strong academic foundation underpins his innovative work in sustainable materials science and green energy π±β‘.
Professional Experience
Dr. Jiasheng Fang currently serves as an associate researcher at Dongguan University of Technology π«. His expertise lies in designing nanomaterials for pollutant remediation, water treatment, and energy applications π. Over the years, he has led several high-impact projects funded by national and provincial foundations π. His practical experience includes nanoparticle synthesis, catalyst design, and applying advanced analytical techniques π¬. Dr. Fangβs contributions bridge theoretical innovation and practical solutions to address global environmental challenges πβ¨.
Research Focus π
Dr. Fangβs research integrates nanotechnology and environmental science π±π¬. His focus is on developing advanced nanocatalysts for pollutant degradation, renewable energy applications, and waste resource utilization β»οΈ. His innovative work on core-shell and yolk-shell catalysts has improved reaction efficiency and stability. These contributions are driving the adoption of greener industrial practices πβ‘.
Conclusion