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HCl dissociating on a rigid Au(111) surface: A six-dimensional quantum mechanical study on a new potential energy surface based on the RPBE functional

机译:HCL解离刚性AU(111)表面:基于RPBE功能的新电位能表面上的六维量子力学研究

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摘要

The dissociative chemisorption of HCl on the Au(111) surface has recently been an interesting and important subject, regarding the discrepancy between the theoretical dissociation probabilities and the experimental sticking probabilities. We here constructed an accurate full-dimensional (sixdimensional (6D)) potential energy surface (PES) based on the density functional theory (DFT) with the revised Perdew-Burke-Ernzerhof (RPBE) functional, and performed 6D quantum mechanical (QM) calculations for HCl dissociating on a rigid Au(111) surface. The effects of vibrational excitations, rotational orientations, and site-averaging approximation on the present RPBE PES are investigated. Due to the much higher barrier height obtained on the RPBE PES than on the PW91 PES, the agreement between the present theoretical and experimental results is greatly improved. In particular, at the very low kinetic energy, the QM-RPBE dissociation probability agrees well with the experimental data. However, the computed QM-RPBE reaction probabilities are still markedly different from the experimental values at most of the energy regions. In addition, the QM-RPBE results achieve good agreement with the recent ab initio molecular dynamics calculations based on the RPBE functional at high kinetic energies. Published by AIP Publishing.
机译:HCl对Au(111)表面的解离化学吸附最近是一个有趣而重要的主题,关于理论解离概率与实验粘性概率之间的差异。我们在这里构建了一种基于密度泛函理论(DFT)的精确的全维性(6Dimensional(6D))电位能表面(PES),具有修订的Perdew-Burke-Ernzerhof(RPBE)功能,并执行了6D量子机械(QM) HCL离解刚性AU(111)表面的HCL计算。研究了振动激发,旋转取向和站点平均近似对当前RPBE PE的影响。由于在RPBE PE上获得的势垒高度大于PW91 PE,本发明的理论和实验结果之间的协议大大提高。特别地,在非常低的动能下,QM-RPBE离解概率与实验数据相当良好。然而,计算的QM-RPBE反应概率仍然与大多数能量区域的实验值显着不同。此外,QM-RPBE结果与最近的AB Initio分子动力学计算基于高动力学能量的RPBE功能达到了良好的一致性。通过AIP发布发布。

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