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基于精确从头算的Cl + NH₃ → HCl + NH₂反应的势能面和动力学

Accurate ab initio based potential energy surface and kinetics of the Cl + NH3 → HCl + NH2 reaction.

作者信息

Tu Zhao, Li Jiaqi, Yang Mingjuan, Chen Yizhuo, Wang Yan, Song Hongwei

机构信息

School of Chemical and Environmental Engineering, Hubei Minzu University, Enshi 445000, China.

State Key Laboratory of Magnetic Resonance Spectroscopy and Imaging, Innovation Academy for Precision Measurement Science and Technology, Chinese Academy of Sciences, Wuhan 430071, China.

出版信息

J Chem Phys. 2024 Jul 21;161(3). doi: 10.1063/5.0216562.

Abstract

The gas-phase reaction Cl + NH3 → HCl + NH2 is a prototypical hydrogen abstraction reaction, whose minimum energy path involves several intermediate complexes. In this work, a full-dimensional, spin-orbit corrected potential energy surface (SOC PES) is constructed for the ground electronic state of the Cl + NH3 reaction. About 52 000 energy points are sampled and calculated at the UCCSD(T)-F12a/aug-cc-pVTZ level, in which the data points located in the entrance channel are spin-orbit corrected. The spin-orbit corrections are predicted by a fitted three-dimensional energy surface from about 7520 energy points in the entrance channel at the level of CASSCF (15e, 11o)/aug-cc-pVTZ. The fundamental-invariant neural network method is utilized to fit the SOC PES, resulting in a total root mean square error of 0.12 kcal mol-1. The calculated thermal rate constants of the Cl + NH3 → HCl + NH2 reaction on the SOC PES with the soft-zero-point energy constraint agree reasonably well with the available experimental values.

摘要

气相反应Cl + NH₃ → HCl + NH₂是一个典型的氢提取反应,其最小能量路径涉及多个中间复合物。在这项工作中,为Cl + NH₃反应的基态电子态构建了一个全维、自旋轨道校正的势能面(SOC PES)。在UCCSD(T)-F12a/aug-cc-pVTZ水平上采样并计算了约52000个能量点,其中位于入口通道的数据点进行了自旋轨道校正。自旋轨道校正是通过在CASSCF(15e, 11o)/aug-cc-pVTZ水平上根据入口通道中约752

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