Bond-selective effect for the dissociative chemisorption of HOD on the Ni(100) surface revealed at the full-dimensional quantum dynamical level

Tianhui Liu, Bina Fu, Dong H. Zhang
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Abstract

We present a comprehensive investigation into the dissociative chemisorption of HOD on a rigid Ni(100) surface using an approximate full-dimensional (9D) quantum dynamics approach, which was based on the time-dependent wave-packet calculations on a full-dimensional potential energy surface obtained through neural network fitting to density functional theory energy points. The approximate-9D probabilities were computed by averaging the seven-dimensional (7D) site-specific dissociation probabilities across six impact sites with appropriate relative weights. Our results uncover a distinctive bond-selective effect, demonstrating that the vibrational excitation of a specific bond substantially enhances the cleavage of that excited bond. The product branching ratios are substantially influenced by which bond undergoes excitation, exhibiting a clear preference for the product formed through the cleavage of the excited bond over the alternative product.
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在全维量子动力学水平上揭示 Ni(100) 表面 HOD 离解化学吸附的键选择效应
我们采用近似全维(9D)量子动力学方法对 HOD 在刚性 Ni(100)表面上的解离化学吸附进行了全面研究,该方法基于通过神经网络拟合密度泛函理论能量点而获得的全维势能面上的随时间变化的波包计算。近似 9D 概率是通过对六个撞击位点的七维(7D)特定位点解离概率进行平均,并加上适当的相对权重计算得出的。我们的研究结果揭示了一种独特的键选择效应,表明特定键的振动激发大大增强了该激发键的裂解。产物分支率受到哪种键受激的影响很大,这表明通过受激键裂解形成的产物明显优于其他产物。
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