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南伊利諾卡本代爾大學(xué)葛慶峰教授做客第357期化苑講壇

作者:  發(fā)布:2018-06-27 08:15:58  點(diǎn)擊量:

報(bào)告題目:Computational Catalysis for Energy-related Applicatio

報(bào) Qingfeng Ge, 葛慶峰

報(bào)告時(shí)間:2018627日(周三)下午2:30

報(bào)告地點(diǎn):化學(xué)樓二樓一號(hào)會(huì)議室

報(bào)告人簡(jiǎn)介:

Dr. Qingfeng Ge is Distinguished Scholar and Professor in the Department of Chemistry and Biochemistry, Southern Illinois University Carbondale and Associate Editor of Journal of CO2 Utilization. Dr. Ge received his education in Chemical Engineering from Tianjin University, China, obtaining B.S., M.S. and Ph.D degrees. He worked as Research Associate in Copenhagen University, Denmark and Cambridge University, U.K. and as Research Scientist in University of Virginia before joining SIUC as an Assistant Professor in 2003. He was promoted to Associate Professor in 2007 and to Professor in 2010. He was selected as the winner of 2017 College of Science Scholar Excellence Award and 2018 University-Level Scholar Excellence Award. A main thrust of his research is using modeling/simulation to address materials issues related to energy and environment, including hydrogen storage, CO2 conversion and utilization, and catalytic biomass conversion. His experiences ranged from experimental characterization and kinetics modeling of catalysts to first principles based simulations of various materials. He is one of the 70 recipients of the Presidential Hydrogen Fuel Initiative awards in the US in 2005.

報(bào)告摘要:

Sustainable development of the world requires efficient processes and materials that can convert sustainable resources into fuels and chemicals. The design and development of robust heterogeneous catalysts for practical applications have been hindered by our limited understanding of the underlying physical/chemical processes that govern the catalytic transformations. Recent advances in DFT-based electronic methods, molecular simulations and the availability of computing power provide unprecedented ability to track these molecular transformations and how they proceed at specific sites and within particular environments. This talk discusses our energy-related research over the past several years. More specifically, I will provide an overview of our work on catalysis related to CO2 conversion and biomass conversion.

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