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DFT study on the adsorption and dissociation of H2S on CuO(111) surface

机译:DFT研究H2S在CuO(111)表面的吸附和解离

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Density functional theory (DFT) together with periodic slab models is employed to investigate the adsorption and dissociation of H2S on the CuO(111) surface. The structures of H2S, SH, S atom, and H atom on the CuO(111) surface, as well as the co-adsorption of SH and a H atom, and the co-adsorption of S atom and two H atoms, have been determined. The pathways of the dissociation of H2S on the CuO(111) surface are constructed. The activation energy and reaction energy of each step in different pathways are also calculated. The energy barrier of the first dehydrogenation process in the pathway 2 is 0.60 kJ mol(-1) higher than that in the pathway 1, but the energy barrier of the second dehydrogenation process in the pathway 2 is 23.50 kJ mol(-1) lower than that in the pathway 1, implying that the structure with two H atoms adsorbed on the O-suf sites is the most probable product for the dissociation of H2S on the CuO(111) surface.
机译:密度泛函理论(DFT)与周期性平板模型一起用于研究H2S在CuO(111)表面的吸附和解离。 CuO(111)表面上的H2S,SH,S原子和H原子的结构以及SH和H原子的共吸附以及S原子和两个H原子的共吸附决心。构造了H2S在CuO(111)表面上的离解途径。还计算了不同路径中每个步骤的活化能和反应能。通道2的第一次脱氢过程的能垒比通道1高0.60 kJ mol(-1),但是通道2的第二次脱氢过程的能垒低23.50 kJ mol(-1)与途径1中的结构相比,这意味着在O-suf位置上吸附有两个H原子的结构是H2S在CuO(111)表面上解离的最可能产物。

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