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An Improved Potential Energy Surface for the H2Cl System and Its Use for Calculations of Rate Coefficients and Kinetic Isotope Effects

机译:改进的H2Cl体系势能面及其在计算速率系数和动力学同位素效应中的用途

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摘要

We present a new potential energy surface (called G3) for the chemical reaction Cl + H2 → HCl + H. The new surface is based on a previous potential surface called GQQ, and it incorporates an improved bending potential that is fit to the results of ab initio electronic structure calculations. Calculations based on variational transition state theory with semiclassical transmission coefficients corresponding to an optimized multidimensional tunneling treatment (VTST/OMT, in particular improved canonical variational theory with least-action ground-state transmission coefficients) are carried out for nine different isotopomeric versions of the abstraction reaction and six different isotopomeric versions of the exchange reaction involving the H, D, and T isotopes of hydrogen, and the new surface is tested by comparing these calculations to available experimental data. The theoretical data are also used to investigate the equilibrium constant and the branching ratio for the reverse reaction, and calculations of these quantities are compared to the available experimental and theoretical data.
机译:我们为化学反应Cl + H2→HCl + H提供了一个新的势能表面(称为G3)。该新表面基于以前的称为GQQ的势能表面,并且结合了改进的弯曲势能,适合于以下结果:从头算起电子结构计算。针对九种不同的同分异构形式,基于变分过渡状态理论进行了计算,其中半经典透射系数对应于优化的多维隧穿处理(VTST / OMT,尤其是具有最小作用基态透射系数的改进的规范变分理论)反应和六个不同的同位素异构形式的交换反应,涉及氢的H,D和T同位素,通过将这些计算与可用的实验数据进行比较来测试新表面。理论数据还用于研究逆反应的平衡常数和支化比,并将这些量的计算与可用的实验和理论数据进行比较。

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