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在神经网络势能面上研究H + CH4 → H2 + CH3反应的初始态选择反应概率的全维与约化维计算。

Full-dimensional and reduced-dimensional calculations of initial state-selected reaction probabilities studying the H + CH4 → H2 + CH3 reaction on a neural network PES.

作者信息

Welsch Ralph, Manthe Uwe

机构信息

Theoretische Chemie, Fakultät für Chemie, Universität Bielefeld, Universitätsstr. 25, D-33615 Bielefeld, Germany.

出版信息

J Chem Phys. 2015 Feb 14;142(6):064309. doi: 10.1063/1.4906825.

Abstract

Initial state-selected reaction probabilities of the H + CH4 → H2 + CH3 reaction are calculated in full and reduced dimensionality on a recent neural network potential [X. Xu, J. Chen, and D. H. Zhang, Chin. J. Chem. Phys. 27, 373 (2014)]. The quantum dynamics calculation employs the quantum transition state concept and the multi-layer multi-configurational time-dependent Hartree approach and rigorously studies the reaction for vanishing total angular momentum (J = 0). The calculations investigate the accuracy of the neutral network potential and study the effect resulting from a reduced-dimensional treatment. Very good agreement is found between the present results obtained on the neural network potential and previous results obtained on a Shepard interpolated potential energy surface. The reduced-dimensional calculations only consider motion in eight degrees of freedom and retain the C3v symmetry of the methyl fragment. Considering reaction starting from the vibrational ground state of methane, the reaction probabilities calculated in reduced dimensionality are moderately shifted in energy compared to the full-dimensional ones but otherwise agree rather well. Similar agreement is also found if reaction probabilities averaged over similar types of vibrational excitation of the methane reactant are considered. In contrast, significant differences between reduced and full-dimensional results are found for reaction probabilities starting specifically from symmetric stretching, asymmetric (f2-symmetric) stretching, or e-symmetric bending excited states of methane.

摘要

基于最近的神经网络势能面[X. Xu, J. Chen, 和 D. H. Zhang, Chin. J. Chem. Phys. 27, 373 (2014)],计算了H + CH4 → H2 + CH3反应的初始态选择反应概率,包括全维及约化维情况。量子动力学计算采用量子过渡态概念和多层多组态含时哈特里方法,并严格研究了总角动量为零(J = 0)时的反应。这些计算考察了神经网络势能面的准确性,并研究了约化维处理所产生的影响。发现基于神经网络势能面得到的当前结果与基于谢泼德插值势能面得到的先前结果之间吻合得非常好。约化维计算仅考虑八个自由度的运动,并保留甲基片段的C3v对称性。考虑从甲烷的振动基态开始的反应,与全维计算结果相比,约化维计算得到的反应概率在能量上有适度的偏移,但在其他方面吻合得相当好。如果考虑对甲烷反应物类似类型的振动激发进行平均后的反应概率,也会发现类似的吻合情况。相比之下,对于从甲烷的对称伸缩、不对称(f2对称)伸缩或e对称弯曲激发态开始反应的概率,约化维和全维结果之间存在显著差异。

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