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金+氢(2)体系的势能面和反应碰撞。

Potential energy surface and reactive collisions for the Au+H(2) system.

机构信息

Unidad Asociada UAM-CSIC, Instituto de Fíisica Fundamental, C.S.I.C. Serrano 123, Madrid 28006, Spain.

出版信息

J Chem Phys. 2010 Jan 21;132(3):034301. doi: 10.1063/1.3290950.

DOI:10.1063/1.3290950
PMID:20095733
Abstract

A global potential energy surface is obtained for the ground state of the endoergic Au((2)S)+H(2)(X (1)Sigma(g) (+))-->AuH((1)Sigma(+))+H((2)S) reaction. The global potential is obtained by fitting highly correlated ab initio calculations on the system, using relativistic pseudopotential for the gold atom. Several electronic states are calculated correlating with Au((2)S)+H(2), Au((2)D)+H(2), and H(2), Au((2)P)+H(2) asymptotes. These states show several conical intersections and curve crossings along the minimum energy reaction path which are analyzed in detail. One of them gives rise to an insertion well in which there are important contributions from the Au((2)D) and Au((2)P) states of gold, which is interesting because it is analog to the deep chemisorption well appearing in larger gold clusters. Quantum wave packet and quasiclassical trajectory dynamical calculations performed for the reaction at zero total angular momentum are in good agreement, provided that a Gaussian binning method is used to account for the zero-point energy of products. Finally, integral and differential cross sections are calculated for the reaction with quasiclassical trajectories. Two different reaction mechanisms are found, one direct and the second indirect, in which the Au atom inserts in between the two hydrogen atoms because of the existence of the insertion well discussed above.

摘要

获得了 Au((2)S)+H(2)(X (1)Sigma(g) (+))-->AuH((1)Sigma(+))+H((2)S) 反应的吸热基态的全局势能面。通过拟合该系统的高相关从头算计算,使用金原子的相对论赝势获得全局势能。计算了与 Au((2)S)+H(2)、Au((2)D)+H(2) 和 H(2)、Au((2)P)+H(2) 渐近线相关的几个电子态。这些态沿着最小能量反应路径显示出几个锥形交叉和曲线交叉,并进行了详细分析。其中之一导致插入势阱,其中金的 Au((2)D) 和 Au((2)P) 态有重要贡献,这很有趣,因为它类似于出现在较大金簇中的深化学吸附势阱。在零总角动量下对反应进行量子波包和准经典轨迹动力学计算,如果使用高斯分箱方法来考虑产物的零点能,则计算结果与实验结果吻合较好。最后,用准经典轨迹计算了反应的积分和微分截面。发现了两种不同的反应机制,一种是直接的,另一种是间接的,由于存在上述讨论的插入势阱,Au 原子插入两个氢原子之间。

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