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基于三体分子解析函数形式的 H5(+)全新精确全维势能面。

A new accurate and full dimensional potential energy surface of H5(+) based on a triatomics-in-molecules analytic functional form.

机构信息

Departamento de Química Física, Facultad de Ciencias C-XIV, Unidad Asociada UAM-CSIC, Universidad Autónoma de Madrid, 28049 Madrid, Spain.

出版信息

J Chem Phys. 2010 Jul 14;133(2):024306. doi: 10.1063/1.3454658.

Abstract

In this work a reliable full nine-dimensional potential energy surface for studying the dynamics of H(5)(+) is constructed, which is completely symmetric under any permutation of the nuclei. For this purpose, we develop a triatoms-in-molecules method as an extension of the more common diatoms-in-molecules one, which allows a very accurate description of the asymptotic regions by including correctly the charge-induced dipole and quadrupole interactions. Moreover, this treatment provides a semiquantitative description of all the topological features of the global potential compared with coupled cluster results. In particular, the hop of the proton between two H(2) fragments produces a double well in the potential. This resonant structure involving the five atoms produces a stabilization, lowering the barrier, and the triatoms-in-molecules yields to a barrier significantly higher than the ab initio results. Therefore, to improve the triatomics-in-molecules potential surface, two five-body terms are added, which are fitted to more than 110,000 coupled-cluster ab initio points. The global potential energy surface thus obtained in this work has an overall root mean square error of 0.079 kcal/mol for energies below 27 kcal/mol above the global well. The features of the potential are described and compared with previous available surfaces.

摘要

在这项工作中,构建了一个可靠的、完全对称的全九维势能面,用于研究 H(5)(+)的动力学。为此,我们开发了一种三原子分子方法,作为更常见的双原子分子方法的扩展,通过正确包含电荷诱导偶极子和四极子相互作用,可以非常准确地描述渐近区域。此外,与耦合簇结果相比,这种处理方法提供了对全局势能所有拓扑特征的半定量描述。特别是,质子在两个 H(2)片段之间的跳跃在势能中产生了双势阱。这种涉及五个原子的共振结构产生了稳定化作用,降低了势垒,而三原子分子产生的势垒比从头算结果高得多。因此,为了改进三原子分子势能面,添加了两个五体项,这些项拟合了超过 110000 个耦合簇从头算点。因此,在这项工作中获得的全局势能面对于全局势阱以上 27 kcal/mol 以下的能量具有整体均方根误差为 0.079 kcal/mol。还描述了势能的特征,并与以前可用的表面进行了比较。

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