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液体中光解离过程中的非平衡溶剂效应:动态能量表面、笼效应和化学特性

Nonequilibrium Solvent Effects during Photodissociation in Liquids: Dynamical Energy Surfaces, Caging, and Chemical Identity.

作者信息

Vong Andy, Widmer Devon R, Schwartz Benjamin J

机构信息

Department of Chemistry & Biochemistry, University of California, Los Angeles, Los Angeles, California 90095-1569, United States.

出版信息

J Phys Chem Lett. 2020 Nov 5;11(21):9230-9238. doi: 10.1021/acs.jpclett.0c02515. Epub 2020 Oct 16.

Abstract

In the gas phase, potential energy surfaces can be used to provide insight into the details of photochemical reaction dynamics. In solution, however, it is unclear what potential energy surfaces, if any, can be used to describe even simple chemical reactions such as the photodissociation of a diatomic solute. In this paper, we use mixed quantum/classical (MQC) molecular dynamics (MD) to study the photodissociation of Na in both liquid Ar and liquid tetrahydrofuran (THF). We examine both the gas-phase potential surfaces and potentials of mean force (PMF), which assume that the solvent remains at equilibrium with the solute throughout the photodissociation process and show that neither resemble a nonequilibrium dynamical energy surface that is generated by taking the time integral of work. For the photodissociation of Na in liquid Ar, the dynamical energy surface shows clear signatures of solvent caging, and the degree of caging is directly related to the mass of the solvent atoms. For Na in liquid THF, local specific interactions between the solute and solvent lead to changes in chemical identity that create a kinetic trap that effectively prevents the molecule from dissociating. The results show that nonequilibrium effects play an important role even in simple solution-phase reactions, requiring the use of dynamical energy surface to understand such chemical events.

摘要

在气相中,势能面可用于深入了解光化学反应动力学的细节。然而,在溶液中,尚不清楚是否存在可用于描述甚至简单化学反应(如双原子溶质的光解离)的势能面。在本文中,我们使用混合量子/经典(MQC)分子动力学(MD)来研究钠在液态氩和液态四氢呋喃(THF)中的光解离。我们研究了气相势能面和平均力势(PMF),后者假设在整个光解离过程中溶剂与溶质保持平衡,并表明两者均与通过对功进行时间积分生成的非平衡动力学能量面不同。对于钠在液态氩中的光解离,动力学能量面显示出溶剂笼效应的明显特征,且笼效应的程度与溶剂原子的质量直接相关。对于钠在液态THF中的情况,溶质与溶剂之间的局部特定相互作用导致化学性质发生变化,从而形成一个动力学陷阱,有效地阻止了分子解离。结果表明,即使在简单的溶液相反应中,非平衡效应也起着重要作用,需要使用动力学能量面来理解此类化学事件。

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