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A DFT Study of the Structures of Aux Clusters on a CeO2(111) Surface
Authors:Prof Dr Bo‐Tao Teng  Feng‐Min Wu  Prof Dr Wei‐Xin Huang  Dr Xiao‐Dong Wen  Prof Lei‐Hong Zhao  Meng‐Fei Luo
Institution:1. Institute of Physical Chemistry, Zhejiang Normal University, Jinhua 321004 (China);2. Hefei National Laboratory for Physical Sciences at the Microscale, CAS Key Laboratory of Materials for Energy Conversion and Department of Chemical Physics, University of Science and Technology of China, Hefei 230026 (China);3. Theoretical Division, Los Alamos National Laboratory, Los Alamos, NM 87545 (USA)
Abstract:Studying the structures of metal clusters on oxide supports is challenging due to their various structural possibilities. In the present work, a simple rule in which the number of Au atoms in different layers of Aux clusters is changed successively is used to systematically investigate the structures of Aux (x=1–10) clusters on stoichiometric and partially reduced CeO2(111) surface by DFT calculations. The calculations indicate that the adsorption energy of a single Au atom on the surface, the surface structure, as well as the Au? Au bond strength and arrangement play the key roles in determining Aux structures on CeO2(111). The most stable Au2 and Au3 clusters on CeO2(111) are 2D vertical structures, while the most stable structures of Aux clusters (x>3) are generally 3D structures, except for Au7. The 3D structures of large Aux clusters in which the Au number in the bottom layer does not exceed that in the top layer are not stable. The differences between Aux on CeO2(111) and Mg(100) were also studied. The stabilizing effect of surface oxygen vacancies on Aux cluster structures depends on the size of Aux cluster and the relative positions of Aux cluster and oxygen vacancy. The present work will be helpful in improving the understanding of metal cluster structures on oxide supports.
Keywords:cluster compounds  density functional calculations  gold  supported catalysts  surface analysis
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