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Kinetics study of the CN + CH4 hydrogen abstraction reaction based on a new ab initio analytical full-dimensional potential energy surface

机译:基于新型AB Initio分析全维势能表面的CN + CH4氢抽取反应的动力学研究

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We have developed an analytical full-dimensional potential energy surface, named PES-2017, for the gas-phase hydrogen abstraction reaction between the cyano radical and methane. This surface is fitted using high-level ab initio information as input. Using the PES-2017 surface, a kinetics study was performed via two theoretical approaches: variational transition-state theory with multidimensional tunnelling (VTST-MT) and ring polymer molecular dynamics (RPMD). The results are compared with the experimental data. In the whole temperature range analysed, 300-1500 K, both theories agree within a factor of <2, reproducing the experimental behaviour taking into account the experimental uncertainties. At high temperatures, where the recrossing effects dominate and the RPMD theory is exact, both theories differ by a factor of about 20%; while at low temperatures this difference is larger, 45%. Note that in this temperature regime, the tunnelling effect is negligible. The CN + CH4/CD4 kinetic isotope effects are important, reproducing the scarce experimental evidence. The good agreement with the ab initio information used in the fitting process (self-consistency test) and with the kinetic behaviour in a wide temperature range gives confidence and strength to the new surface.
机译:我们已经开发了一个分析全维势能表面,名为PES-2017,用于氰基和甲烷之间的气相氢气抽象反应。使用高级AB Initio信息作为输入拟合此表面。使用PES-2017表面,通过两种理论方法进行动力学研究:具有多维隧道(VTST-MT)和环聚合物分子动力学(RPMD)的变分过渡状态理论。将结果与实验数据进行比较。在分析的全温度范围内,300-1500克,这两个理论都同意了<2,再现实验行为考虑了实验的不确定性。在高温下,裁员效果主导地位和RPMD理论准确的情况下,这两个理论都不同约20%;虽然在低温下,这种差异较大,45%。请注意,在该温度制度中,隧道效果可忽略不计。 CN + CH4 / CD4动力学同位素效应很重要,再现稀缺的实验证据。与拟合过程(自我一致性测试)和宽温度范围内的动力学行为一起使用的AB Initio信息良好的一致性达到了新表面的信心和力量。

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