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A full-dimensional quantum dynamics study of the mode specificity in the H plus HOD abstraction reaction

机译:H + HOD抽象反应中模式特异性的全尺寸量子动力学研究

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We employ the initial state-selected time-dependent wave packet approach to an atom-triatom reaction to study the H + HOD -> OH + HD/OD + H-2 reaction without the centrifugal sudden approximation, based on an accurate potential energy surface which was recently developed by neural network fitting to high level ab initio energy points. The total reaction probabilities and integral cross sections, which are the exact coupled-channel results, are calculated for the HOD reactant initially in the ground and several vibrationally excited states, including the bending excited state, OD stretching excited states, OH stretching excited states, and combined excitations of them. The reactivity enhancements from different initial states of HOD are presented, which feature strong bond-selective effects of the reaction dynamics. The current results for the product branching ratios, reactivity enhancements, and relative cross sections are largely improved over the previous calculations, in quantitatively good agreement with experiment. The thermal rate constant for the title reaction and the contributions from individual vibrational states of HOD are also obtained. (C) 2015 AIP Publishing LLC.
机译:我们使用初始状态选择的时间相关波包方法进行原子-三原子反应,以基于精确的势能面研究H + HOD-> OH + HD / OD + H-2反应,而无需离心突然逼近最近由神经网络开发,适合高水平的从头算能量点。对于最初在地面和几种振动激发态(包括弯曲激发态,OD拉伸激发态,OH拉伸激发态)的HOD反应物,计算出精确的耦合通道结果的总反应概率和积分横截面,并结合起来激发它们。提出了来自HOD不同初始状态的反应性增强,其特征在于反应动力学具有很强的键选择性效应。当前产品支化率,反应性增强和相对截面的结果比以前的计算有了很大的改善,与实验在数量上很好地吻合。还获得标题反应的热速率常数以及HOD各个振动状态的贡献。 (C)2015 AIP Publishing LLC。

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