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A Density Functional Theory Study of Methoxy and Atomic Hydrogen Chemisorption on Au(100) Surface

机译:Au(100)表面上甲氧基和原子氢化学吸附的密度泛函理论研究

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The adsorption of CH3O and H on the (100) facet of gold was studied using self-consistent periodic density functional theory (DFT-GGA) calculations. The best binding site, energy, and structural parameter, as well as the local density of states, of each species were determined. CH3O is predicted to strongly adsorb on the bridge and hollow sites, with the bridge site as preferred one, with one of the hydrogen atoms pointing toward a fourfold vacancy (bridge-H hollow). The top site was found to be unstable, the CH3O radical moving to the bridge –H top site during geometry optimization. Adsorption of H is unstable on the hollow site, the atom moving to the bridge site during geometry optimization. The 4-layer slab is predicted to be endothermic with respect to gaseous H2 and a clean Au surface.
机译:使用自洽周期密度泛函理论(DFT-GGA)计算研究了CH3O和H在金(100)面上的吸附。确定了每个物种的最佳结合位点,能量和结构参数,以及状态的局部密度。预计CH3O会强烈吸附在桥和空心位点上,其中桥位是优选的,其中氢原子之一指向四倍的空位(桥H空心位)。发现顶部位置不稳定,在几何优化过程中CH3O自由基移至桥-H顶部位置。 H在中空部位的吸附不稳定,在几何优化过程中原子移动到桥部位。预计该4层板相对于气态H2和干净的Au表面是吸热的。

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