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The adsorption of CO2, H2CO3, HCO3− and CO32− on Cu2O (111) surface: First‐principles study
Authors:Huanwen Wu  Ning Zhang  Zhiji Cao  Hongming Wang  Sanguo Hong
Affiliation:1. Department of Chemistry, Nanchang University, Nanchang, Jiangxi 330031, People's Republic of China;2. Department of Mathematics and Computer Science, California State University, East bay, Hayward, California 94542
Abstract:The adsorption of CO2, and its derivatives, H2CO3, HCOurn:x-wiley:00207608:media:QUA23250:tex2gif-stack-1, and COurn:x-wiley:00207608:media:QUA23250:tex2gif-stack-2, on Cu2O (111) surface has been investigated by first‐principles calculations based on the density functional theory at B3LYP hybrid functional level. The Cu2O (111) surface has been modeled using an embedded cluster method,in which the quantum clusters plus some ab initio ion model potentials were inserted in an array of point charges. On the surface, H2CO3 was dissociated into an H+ and an HCOurn:x-wiley:00207608:media:QUA23250:tex2gif-stack-3 ion. Among the CO2 species, HCOurn:x-wiley:00207608:media:QUA23250:tex2gif-stack-4 was the only activated species on the surface. The results suggest that the reduction of CO2 on Cu2O (111) surface can start from the form of HCOurn:x-wiley:00207608:media:QUA23250:tex2gif-stack-5. © 2011 Wiley Periodicals, Inc. Int J Quantum Chem, 2011
Keywords:Cu2O (111)  surface  carbon dioxide species  bicarbonate ion  adsorption  First‐principles calculation
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