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Tuning the charge state of Ag and Au atoms and clusters deposited on oxide surfaces by doping: a DFT study of the adsorption properties of nitrogen- and niobium-doped TiO2 and ZrO2

机译:通过掺杂来调节沉积在氧化物表面上的Ag和Au原子以及簇的电荷状态:DFT研究氮和铌掺杂的TiO2和ZrO2的吸附特性

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摘要

The charge state of Ag and Au atoms and clusters (Ag-4 and Au-4, Ag 5 and Au5) adsorbed on defective TiO2 anatase(101) and tetragonal ZrO2(101) has been systematically investigated as a function of oxide doping and defectivity using a DFT+U approach. As intrinsic defects, we have considered the presence of oxygen vacancies. As extrinsic defects, substitutional nitrogen- and niobium-doping have been investigated, respectively. Both surface and sub-surface defects and dopants have been considered. Whereas on surfaces with oxygen vacancies or Nb-doping, atoms and clusters may become negatively charged, N-doping always leads to the formation of positively charged adsorbates, independently of the supporting material (TiO2 or ZrO2). This suggests the possibility to tune the electronic properties of supported metal clusters by selective doping of the oxide support, an effect that may result in complete changes in chemical reactivity.
机译:已经系统地研究了吸附在缺陷TiO2锐钛矿(101)和四方ZrO2(101)上的Ag和Au原子以及簇(Ag-4和Au-4,Ag 5和Au5)的电荷状态与氧化物掺杂和缺陷性的关系。使用DFT + U方法。作为内在缺陷,我们考虑了氧空位的存在。作为外在缺陷,已经分别研究了氮和铌的替代掺杂。已经考虑了表面和亚表面缺陷以及掺杂剂。在具有氧空位或Nb掺杂的表面上,原子和簇可能带负电,而N掺杂总是导致形成带正电荷的吸附物,而与载体材料(TiO2或ZrO2)无关。这表明可以通过对氧化物载体的选择性掺杂来调节负载的金属簇的电子性质,这种作用可能导致化学反应性的完全改变。

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