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首页> 外文期刊>The Journal of Chemical Physics >An extended hindered-rotor model with incorporation of Coriolis and vibrational-rotational coupling for calculating partition functions and derived quantities
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An extended hindered-rotor model with incorporation of Coriolis and vibrational-rotational coupling for calculating partition functions and derived quantities

机译:结合科里奥利和振动-旋转耦合的受阻转子扩展模型,用于计算分配函数和导出量

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摘要

Large-amplitude motions,particularly internal rotations,are known to affect substantially thermodynamic functions and rate constants of reactions in which flexible molecules are involved.Up to now all methods for computing the partition functions of these motions rely on the Pitzer approximation of more than 50 years ago,in which the large-amplitude motion is treated in complete independence of the other (vibrational) degrees of freedom.In this paper an extended hindered-rotor model (EHR) is developed in which the vibrational modes,treated harmonically,are correctly separated from the large-amplitude motion and in which relaxation effects (the changes in the kinetic-energy matrix and potential curvature) are taken into account as one moves along the large-amplitude path.The model also relies on a specific coordinate system in which the Coriolis terms vanish at all times in the Hamiltonian.In this way an increased level of consistency between the various internal modes is achieved,as compared with the more usual hindered-rotor (HR) description.The method is illustrated by calculating the entropies and heat capacities on 1,3-butadiene and 1-butene (with,respectively,one and two internal rotors) and the rate constant for the addition reaction of a vinyl radical to ethene.We also discuss various variants of the one-dimensional hindered-rotor scheme existing in the literature and its relation with the EHR model.It is argued why in most cases the HR approach is already quite successful.
机译:众所周知,大幅度运动,特别是内部旋转,会影响涉及柔性分子的反应的热力学函数和速率常数。到目前为止,所有计算这些运动的分区函数的方法都依赖于Pitzer近似值(大于50)几年前,在完全独立于其他(振动)自由度的情况下处理大振幅运动。本文开发了扩展的受阻转子模型(EHR),其中谐波处理的振动模式得到了正确的处理该模型与大振幅运动分离,并且在沿大振幅路径移动时考虑了松弛效应(动能矩阵和势曲率的变化),该模型还依赖于特定的坐标系,其中在哈密顿量中,科里奥利术语一直都消失。这样,随着通过对更常见的受阻转子(HR)描述进行比较。该方法通过计算1,3-丁二烯和1-丁烯(分别具有一个和两个内部转子)的熵和热容量以及对我们还讨论了文献中存在的一维受阻转子方案的各种变体及其与EHR模型的关系。有人认为,为什么在大多数情况下HR方法已经非常成功。

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