Pan Mengyi, Xiang Haipan, Li Yong, Song Hongwei
State Key Laboratory of Magnetic Resonance and Atomic and Molecular Physics, Wuhan Institute of Physics and Mathematics, Innovation Academy for Precision Measurement Science and Technology, Chinese Academy of Sciences, Wuhan 430071, China.
Phys Chem Chem Phys. 2021 Sep 7;23(33):17848-17855. doi: 10.1039/d1cp02423j. Epub 2021 Aug 16.
Gas-phase ion-molecule reactions play major roles in many fields of chemistry and physics. The reaction of an amino radical anion with a hydrogen molecule is one of the simplest proton transfer reactions involving anions. A globally accurate full-dimensional potential energy surface (PES) for the NH + H reaction is developed by the fundamental invariant-neural network method, resulting in a root mean square error of 0.116 kcal mol. Quasi-classical trajectory calculations are then carried out on the newly developed PES to give integral cross sections, differential cross sections and thermal rate coefficients. This reaction has two reaction channels, proton transfer and hydrogen exchange. The reactivity of the proton transfer channel is about one or two orders of magnitude stronger than that of the hydrogen exchange channel in the energy range studied. Vibrational excitation of H promotes the proton transfer reaction, while fundamental excitation of each vibrational mode of NH has a negligible effect. In addition, the theoretical rate coefficients of the proton transfer reaction on the PES show inverse temperature dependence from 150 to 750 K, in accordance with the available experimental results.
气相离子-分子反应在化学和物理的许多领域中都起着重要作用。氨基自由基阴离子与氢分子的反应是涉及阴离子的最简单的质子转移反应之一。通过基本不变神经网络方法开发了用于NH + H反应的全局精确全维势能面(PES),其均方根误差为0.116 kcal mol。然后在新开发的PES上进行准经典轨迹计算,以给出积分截面、微分截面和热速率系数。该反应有两个反应通道,即质子转移和氢交换。在所研究的能量范围内,质子转移通道的反应活性比氢交换通道强约一到两个数量级。H的振动激发促进了质子转移反应,而NH各振动模式的基态激发影响可忽略不计。此外,PES上质子转移反应的理论速率系数在150至750 K范围内呈现出与现有实验结果一致的逆温度依赖性。