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H(+) + D(2) 反应的动力学:量子力学波包、准经典和统计-准经典结果的比较。

The dynamics of the H(+) + D(2) reaction: a comparison of quantum mechanical wavepacket, quasi-classical and statistical-quasi-classical results.

机构信息

Departamento de Química Física, Facultad de Ciencias Químicas, Universidad de Salamanca, 37008 Salamanca.

出版信息

Phys Chem Chem Phys. 2010 Feb 7;12(5):1102-15. doi: 10.1039/b919914d. Epub 2009 Dec 7.

Abstract

A detailed study of the proton exchange reaction H(+) + D(2)(v = 0, j = 0) --> HD + D(+) on its ground 1(1)A' potential energy surface has been carried out using 'exact' close-coupled quantum mechanical wavepacket (WP-EQM), quasi-classical trajectory (QCT), and statistical quasi-classical trajectory (SQCT) calculations for a range of collision energies starting from the reaction threshold to 1.3 eV. The WP-EQM calculations include all total angular momenta up to J(max) = 50, and therefore the various dynamical observables are converged up to 0.6 eV. It has been found that it is necessary to include all Coriolis couplings to obtain reliable converged results. Reaction probabilities obtained using the different methods are thoroughly compared as a function of the total energy for a series of J values. Comparisons are also made of total reaction cross sections as function of the collision energy, and rate constants. In addition, opacity functions, integral cross sections (ICS) and differential cross sections (DCS) are presented at 102 meV, 201.3 meV and 524.6 meV collision energy. The agreement between the three sets of results is only qualitative. The QCT calculations fail to describe the overall reactivity and most of the dynamical observables correctly. At low collision energies, the QCT method is plagued by the lack of conservation of zero point energy, whilst at higher collision energies and/or total angular momenta, the appearance of an effective repulsive potential associated with the centrifugal motion "over" the well causes a substantial decrease of the reactivity. In turn, the statistical models overestimate the reactivity over the whole range of collision energies as compared with the WP-EQM method. Specifically, at sufficiently high collision energies the reaction cannot be deemed to be statistical and important dynamical effects seem to be present. In general the WP-EQM results lie in between those obtained using the QCT and SQCT methods. One of the main, unexpected, conclusions of this work is that an accurate description of the reaction and of its various dynamical features requires a computationally expensive, accurate quantum mechanical treatment.

摘要

对质子交换反应 H(+) + D(2)(v = 0, j = 0) --> HD + D(+) 在其基态 1(1)A'势能面上进行了详细研究,使用了“精确”的紧密耦合量子力学波包 (WP-EQM)、准经典轨迹 (QCT) 和统计准经典轨迹 (SQCT) 计算,涵盖了从反应阈值到 1.3 eV 的一系列碰撞能量。WP-EQM 计算包括高达 J(max) = 50 的所有总角动量,因此各种动力学观测值在 0.6 eV 内收敛。结果发现,必须包括所有科里奥利耦合才能获得可靠的收敛结果。使用不同方法获得的反应概率作为一系列 J 值的总能量的函数进行了彻底比较。还比较了作为碰撞能函数的总反应截面和速率常数。此外,还在 102 meV、201.3 meV 和 524.6 meV 碰撞能下给出了不透明度函数、积分截面 (ICS) 和微分截面 (DCS)。三种结果之间的一致性仅为定性。QCT 计算无法正确描述整体反应性和大多数动力学观测值。在低碰撞能下,QCT 方法受到零能点能量守恒的缺乏的困扰,而在较高的碰撞能和/或总角动量下,与离心运动“越过”势阱相关的有效排斥势的出现导致反应性的大幅下降。反过来,统计模型与 WP-EQM 方法相比,在整个碰撞能范围内高估了反应性。具体来说,在足够高的碰撞能下,反应不能被认为是统计的,并且似乎存在重要的动力学效应。一般来说,WP-EQM 结果介于 QCT 和 SQCT 方法之间。这项工作的一个主要、意外的结论是,对反应及其各种动力学特征的准确描述需要计算成本高、准确的量子力学处理。

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