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DFT calculations for Au adsorption onto a reduced TiO2 (110) surface with the coexistence of Cl
Authors:Kohei Tada  Kohei Sakata  Satoru Yamada  Kazuyuki Okazaki  Yasutaka Kitagawa  Takashi Kawakami
Institution:1. Department of Chemistry, Graduate School of Science, Osaka University, Osaka, Japanktada@chem.sci.osaka-u.ac.jp;3. Department of Chemistry, Graduate School of Science, Osaka University, Osaka, Japan
Abstract:Residual chlorines, which originate from HAuCl4, enhance the aggregation of gold (Au) nanoparticles and clusters, preventing the generation of highly active supported Au catalysts. However, the detailed mechanism of residual-chlorine-promoted aggregation of Au is unknown. Herein to investigate this mechanism, density functional theory (DFT) calculations of Au and Cl adsorption onto a reduced rutile TiO2 (110) surface were performed using a generalised gradient approximation Perdew, Burke, and Ernzerhof formula (GGA–PBE) functional and plane-wave basis. Although both Au and Cl atoms prefer to mono-absorb onto oxygen defect sites, Cl atoms have a stronger absorption onto a reduced TiO2 (110) surface, abbreviated as rTiO2 (110) in the following, than Au atoms. Additionally, co-adsorption of a Cl atom and a Au atom or Au nanorod onto a rTiO2 surface was investigated; Cl adsorption onto an oxygen defect site weakens the interaction between a Au atom or Au nanorod and rTiO2 (110) surface. The calculation results suggest that the depletion of interaction between Au and rTiO2 surface is due to strong interaction between Cl atoms at oxygen defect sites and neighbouring bridging oxygen (OB) atoms.
Keywords:Au catalyst  rutile TiO2  Au adsorption  Cl adsorption  DFT calculation
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