Banks Simon T, Clary David C
Physical and Theoretical Chemistry Department, University of Oxford, South Parks Road, Oxford, UK.
Phys Chem Chem Phys. 2007 Feb 28;9(8):933-43. doi: 10.1039/b615460c. Epub 2007 Jan 8.
We study the reaction Cl + CH(4)--> HCl + CH(3) using a 2-D potential energy surface obtained by fitting a double Morse analytical function to high level (CCSD(T)/cc-pVTZ//MP2/cc-pVTZ)ab initio data. Dynamics simulations are performed in hyperspherical coordinates with the close-coupled equations being solved using R-matrix propagation. Quantum contributions from spectator modes are included via a harmonic zero-point correction to the ab initio data prior to fitting the potential. This is the first time this method has been applied to a heavy-light-heavy reaction and the first time it has been used to study differential cross sections. We find thermal rate constants and state-to-state differential cross sections which are in good agreement with experimental data. We discuss the applicability of our method to the study of kinetic isotope effects (KIEs), which we derive for the CH(4)/CD(4) substitution. The calculated KIE compares favourably with experiment. Finally, we discuss the sensitivity of the results of dynamics simulations on the accuracy of the fitted potential.
我们使用通过将双莫尔斯解析函数拟合到高水平(CCSD(T)/cc-pVTZ//MP2/cc-pVTZ)从头算数据而获得的二维势能面,研究反应Cl + CH₄ → HCl + CH₃。动力学模拟在超球坐标中进行,使用R矩阵传播求解紧密耦合方程。在拟合势能之前,通过对从头算数据进行谐波零点校正来包含旁观模式的量子贡献。这是该方法首次应用于重-轻-重反应,也是首次用于研究微分截面。我们得到了与实验数据良好吻合的热速率常数和态-态微分截面。我们讨论了我们的方法对动力学同位素效应(KIEs)研究的适用性,我们推导了CH₄/CD₄取代的KIE。计算得到的KIE与实验结果相当。最后,我们讨论了动力学模拟结果对拟合势能准确性的敏感性。