Junhang Dong is Professor of Chemical Engineering and Rieveschl Eminent Scholar Chair in Membrane Science and Technology at the University of Cincinnati's College of Engineering and Applied Science. His research pioneers microporous inorganic membranes and nanostructured catalysts for clean energy applications including hydrogen production, CO 2 capture, and redox flow batteries. His educational credentials include: Ph.D. in Chemical Engineering, Nanjing University of Technology, China (1995) B.S. in Chemical Engineering, Zhejiang University of Technology, China (1988) Dr. Dong's research centers on structure-performance relationships of zeolite-based membranes for critical energy challenges. Key focus areas include: Proton-conductive membranes for next-generation redox flow batteries High-flux desalination membranes for brine reclamation CO 2 -selective membranes for carbon capture from coal systems Optical sensor platforms for harsh environment monitoring Nanostructured catalysts for hydrogen production via water-gas shift reactions His 15 most recent publications (2018-2024) reveal accelerating innovation in zeolite nanosheet engineering, with 60% targeting energy storage and 30% focused on environmental applications. Notable trends include the convergence of membrane science with sensor technology and the development of liquid metal-CO 2 systems for simultaneous energy storage and carbon utilization. His scientific recognition includes: Ohio Eminent Scholar appointment Rieveschl Eminent Scholar Chair in Membrane Science and Technology Dr. Dong has secured over $3.5 million in research funding as Principal Investigator from federal agencies and the State of Ohio. His major projects include: Department of Energy initiatives on pre-combustion carbon capture membrane reactors NSF-funded development of zeolite thin films for redox flow batteries Ohio Coal Development Office projects for hydrogen production from coal Army Research Laboratory programs for explosive detection sensors He leads a multidisciplinary research group at UC advancing membrane technology for energy transition, with current emphasis on integrating liquid metal systems with CO 2 conversion for next-generation energy storage.







