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具有可变动力学函数的受阻转子模型,可实现准确的热力学和动力学预测。

Hindered rotor models with variable kinetic functions for accurate thermodynamic and kinetic predictions.

机构信息

CNRS, Laboratoire des Composites ThermoStructuraux, UMR 5801, 3 Allée de La Boétie, 33600 Pessac, France.

出版信息

J Chem Phys. 2010 Oct 21;133(15):154112. doi: 10.1063/1.3504614.

Abstract

We present an extension of some popular hindered rotor (HR) models, namely, the one-dimensional HR (1DHR) and the degenerated two-dimensional HR (d2DHR) models, allowing for a simple and accurate treatment of internal rotations. This extension, based on the use of a variable kinetic function in the Hamiltonian instead of a constant reduced moment of inertia, is extremely suitable in the case of rocking/wagging motions involved in dissociation or atom transfer reactions. The variable kinetic function is first introduced in the framework of a classical 1DHR model. Then, an effective temperature and potential dependent constant is proposed in the cases of quantum 1DHR and classical d2DHR models. These methods are finally applied to the atom transfer reaction SiCl(3)+BCl(3)→SiCl(4)+BCl(2). We show, for this particular case, that a proper accounting of internal rotations greatly improves the accuracy of thermodynamic and kinetic predictions. Moreover, our results confirm (i) that using a suitably defined kinetic function appears to be very adapted to such problems; (ii) that the separability assumption of independent rotations seems justified; and (iii) that a quantum mechanical treatment is not a substantial improvement with respect to a classical one.

摘要

我们提出了一些流行的受阻转子(HR)模型的扩展,即一维 HR(1DHR)和退化的二维 HR(d2DHR)模型,允许对内部旋转进行简单而准确的处理。这种扩展基于在哈密顿量中使用可变动能函数而不是常数约化转动惯量,在涉及解离或原子转移反应的摇摆运动的情况下非常适用。可变动能函数首先在经典 1DHR 模型的框架中引入。然后,在量子 1DHR 和经典 d2DHR 模型的情况下提出了一个与温度和势能相关的常数。这些方法最终应用于原子转移反应 SiCl(3)+BCl(3)→SiCl(4)+BCl(2)。对于这个特殊情况,我们表明,适当考虑内部旋转可以大大提高热力学和动力学预测的准确性。此外,我们的结果证实:(i)使用适当定义的动能函数似乎非常适合此类问题;(ii)独立旋转的可分离性假设似乎是合理的;(iii)与经典方法相比,量子力学处理并没有实质性的改进。

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