Physical and Theoretical Chemistry Laboratory, Department of Chemistry, University of Oxford, South Parks Road, Oxford, OX1 3QZ, UK.
Phys Chem Chem Phys. 2020 Jan 2;22(2):564-574. doi: 10.1039/c9cp05109k.
It is very difficult to perform experiments on the physical parameters for the thermal decomposition of chemical nerve agents such as VX and computations, therefore, are useful. The reaction dynamics of the gas-phase pericyclic hydrogen transfer of the nerve agent VX is studied computationally. The geometries of the stationary structures are calculated at M06-2X/jul-cc-pVTZ level of theory. Single point energy calculations are carried out at the CBS/QB3 level to correct the energy barriers. Canonical reaction rate constants are calculated as a function of temperature. The one-dimensional semiclassical transition state theory is used to analyse the quantum tunneling effects. A reduced-dimensional hindered rotor model is proposed, tested, and applied to calculate the vibrational partition functions. It is found that the ester (O-side) and thioester (S-side) side chains of VX undergo pericyclic H-transfer reactions that result in decomposition of the molecule. The S-side reaction is favoured both kinetically and thermodynamically and dominates the pyrolysis over the temperature range from 600 K to 1000 K. It is predicted that VX completely decomposes in 2 s at temperatures above 750 K.
对于化学神经毒剂 VX 等的热分解物理参数进行实验非常困难,因此计算是有用的。本文通过计算研究了神经毒剂 VX 气相中环反应的氢转移反应动力学。在 M06-2X/jul-cc-pVTZ 理论水平上计算了稳定结构的几何形状。在 CBS/QB3 水平上进行单点能计算以校正能垒。作为温度的函数计算了正则反应速率常数。使用一维半经典过渡态理论分析了量子隧道效应。提出、测试并应用简化的受阻转子模型来计算振动配分函数。结果表明,VX 的酯(O-侧)和硫酯(S-侧)侧链发生了周环 H 转移反应,导致分子分解。S-侧反应在动力学和热力学上都更有利,并且在 600 K 至 1000 K 的温度范围内主导着热解。预测在高于 750 K 的温度下,VX 将在 2 秒内完全分解。