Q
Qiaohong Li
Researcher at Chinese Academy of Sciences
Publications - 85
Citations - 3140
Qiaohong Li is an academic researcher from Chinese Academy of Sciences. The author has contributed to research in topics: Catalysis & Density functional theory. The author has an hindex of 22, co-authored 77 publications receiving 1805 citations. Previous affiliations of Qiaohong Li include University of Wyoming & Minjiang University.
Papers
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Journal ArticleDOI
CO 2 hydrogenation to high-value products via heterogeneous catalysis.
Run-Ping Ye,Run-Ping Ye,Jie Ding,Jie Ding,Weibo Gong,Morris D. Argyle,Qin Zhong,Yujun Wang,Christopher K. Russell,Christopher K. Russell,Zhenghe Xu,Armistead G. Russell,Qiaohong Li,Maohong Fan,Maohong Fan,Yuan-Gen Yao +15 more
TL;DR: This perspective presents current state of the art and outlook in synthesis of light olefins, dimethyl ether, liquid fuels, and alcohols through two leading hydrogenation mechanisms: methanol reaction and Fischer-Tropsch based carbon dioxide hydrogenation.
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Metal-Free Fluorine-Doped Carbon Electrocatalyst for CO2 Reduction Outcompeting Hydrogen Evolution.
TL;DR: A fluorine-doped carbon (FC) catalyst is synthesized by pyrolyzing commercial BP 2000 with a fluorine source, enabling a highly selective CO2 -to-CO conversion with a maximum Faradaic efficiency of 90 % and a low overpotential at a small Tafel slope of 81 mV dec-1.
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Magnetic properties of nonmetal atoms absorbed MoS2 monolayers
TL;DR: In this paper, the geometries, electronic structures, and magnetic properties of H-, B-, C-, N-, O-, and F-absorbed MoS2 monolayers have been investigated by first-principles calculations.
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High-performance of nanostructured Ni/CeO2 catalyst on CO2 methanation
Run-Ping Ye,Run-Ping Ye,Qiaohong Li,Weibo Gong,Tongtong Wang,Joshua J. Razink,Ling Lin,Ye-Yan Qin,Zhangfeng Zhou,Hertanto Adidharma,Jinke Tang,Armistead G. Russell,Maohong Fan,Maohong Fan,Yuan-Gen Yao +14 more
TL;DR: In this article, a nanostructured Ni/CeO2-SGM catalyst was developed to make progress in this area for CO2 methanation, which reached 80.5 % and achieved CH4 selectivity was as high as 95.8 % even at a temperature as low as 250 oC under a high gas hourly space velocity of 40,000 mL·g−1·h−1 for 106 h.
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Epitaxial growth of oriented prussian blue analogue derived well-aligned CoFe2O4 thin film for efficient oxygen evolution reaction
TL;DR: In this article, a well-aligned mesoporous CoFe2O4 thin film was developed from surface epitaxial growth of oriented CoFe-based prussian blue analogue thin film (CoFe-PBA thin film) for efficient electrocatalytic OER.