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Six-dimensional quantum dynamics study for the dissociative adsorption of HCl on Au(111) surface

机译:HCl在Au(111)表面上的解离吸附的六维量子动力学研究

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The six-dimensional quantum dynamics calculations for the dissociative chemisorption of HCl on Au(111) are carried out using the time-dependent wave-packet approach, based on an accurate PES which was recently developed by neural network fitting to density functional theory energy points. The influence of vibrational excitation and rotational orientation of HCl on the reactivity is investigated by calculating the exact six-dimensional dissociation probabilities, as well as the four-dimensional fixed-site dissociation probabilities. The vibrational excitation of HCl enhances the reactivity and the helicopter orientation yields higher dissociation probability than the cartwheel orientation. A new interesting site-averaged effect is found for the title molecule-surface system that one can essentially reproduce the six-dimensional dissociation probability by averaging the four-dimensional dissociation probabilities over 25 fixed sites.
机译:基于时间依赖性波包方法,基于最近通过神经网络拟合密度泛函理论能量点而开发的精确的PES,进行了HCl在Au(111)上的解离化学吸附的六维量子动力学计算。 。通过计算精确的六维解离概率以及四维固定位点解离概率,研究了HCl的振动激发和旋转取向对反应性的影响。 HCl的振动激发增强了反应性,直升机方向比车轮方向产生更高的离解概率。对于标题分子-表面系统,发现了一种新的有趣的位点平均效应,该效应可以通过对25个固定位点的四维解离概率求平均,从而基本上重现六维解离概率。

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