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Water adsorption and dissociation on gold catalysts supported on anatase- TiO_2(101)

机译:anatase-tiO_2负载的金催化剂上的水吸附和解离(101)

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The presence of water can strongly affect the reactivity of gold catalysts. For this reason, ab initio density functional simulations have been performed to study the adsorption and dissociation of water on the anatase-TiO2(101) surface, both clean and in the presence of a supported model gold nanocluster, Au-4. When adsorbed not too close to the cluster, water is adsorbed and dissociated with roughly the same binding energies and dissociation barriers as in the catalyst-free surface. If the molecule adsorbs at the Au/TiO2 perimeter interface, making contact with gold, we find a slight stabilization of molecular water, whereas dissociated water becomes slightly less stable. The preferential mechanism for water dissociation is found to be a splitting of the H-OH bond at the TiO2 surface, with the gold cluster playing a minor role. Calculations of the relative stability of various water-related species show that the gold catalyst favours accumulation of excess hydroxyls around its perimeter.
机译:水的存在可以强烈影响金催化剂的反应性。因此,已经进行了AB初始密度函数模拟,以研究水在anatase-tiO2(101)表面上的水,既清洁,也是在负载的模型金纳米球蛋丸体Au-4存在下的吸附和解离。当吸附不太靠近簇时,吸附水并与催化剂表面大致相同的结合能量和离解屏障进行脱离。如果分子在Au / TiO2周边界面处吸附,请与金接触,我们发现分子水的轻微稳定,而解离水变得略微不太稳定。发现水解离的优先机制是在TiO 2表面处的H-OH键的分裂,金簇在播放轻微作用。各种水有关物种的相对稳定性的计算表明,金催化剂围绕其周边的过量羟基积累。

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