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Quantum instanton calculation of rate constants for the C(2)H(6) + H -> C(2)H(5) + H(2) reaction: anharmonicity and kinetic isotope effects

机译:C(2)H(6)+ H-> C(2)H(5)+ H(2)反应的速率常数的量子瞬时计算:非谐和动力学同位素效应

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摘要

Thermal rate constants and kinetic isotope effects for the title reaction are calculated by using the quantum instanton approximation within the full dimensional Cartesian coordinates. The obtained results are in good agreement with experimental measurements at high temperatures. The detailed investigation reveals that the anharmonicity of the hindered internal rotation motion does not influence the rate too much compared to its harmonic oscillator approximation. However, the motion of the nonreactive methyl group in C(2)H(6) significantly enhances the rates compared to its rigid case, which makes conventional reduced-dimensionality calculations a challenge. In addition, the temperature dependence of kinetic isotope effects is also revealed.
机译:标题反应的热速率常数和动力学同位素效应是通过在完整尺寸的笛卡尔坐标内使用量子瞬时子近似来计算的。所得结果与高温下的实验测量结果非常吻合。详细的研究表明,与其谐波谐振器逼近相比,受阻碍的内部旋转运动的非谐性对速率的影响不大。但是,与刚性情况相比,C(2)H(6)中非反应性甲基的运动显着提高了速率,这使得常规的降维计算成为一个挑战。此外,还揭示了动力学同位素效应的温度依赖性。

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