Theoretical study of time-resolved photoelectron circular dichroism in the photodissociation of a chiral molecule

Marit R. Fiechter, Vít Svoboda, Hans Jakob Wörner
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Abstract

Photoelectron circular dichroism (PECD), the forward–backward asymmetry of the photoelectron angular distribution when ionizing randomly oriented chiral molecules with circularly polarized light, is an established method to investigate chiral properties of molecules in their electronic ground state. Here, we develop a computational strategy for predicting time-resolved PECD (TRPECD) of chemical reactions and demonstrate the method on the photodissociation of 1-iodo-2-methylbutane. Our approach combines multi-configurational quantum-chemical calculations of the relevant potential-energy surfaces of the neutral and singly ionized molecule with ab initio molecular-dynamics (AIMD) calculations. The PECD parameters along the AIMD trajectories are calculated with the aid of electron-molecule scattering calculations based on the Schwinger variational principle implemented in ePolyScat. Our calculations have been performed for two probe wavelengths (133 and 160 nm) accessible through low-order harmonic generation in gases. Our results show that the TRPECD is a highly sensitive probe of photochemical reaction dynamics. Most interestingly, the TRPECD is found to change sign multiple times along the photodissociation coordinate, in agreement with recent experiments on CHBrFI [Svoboda et al., “Femtosecond photoelectron circular dichroism of chemical reactions,” Sci. Adv. 8, eabq2811 (2022)]. The computational protocol introduced in the present work is general and readily applicable to other chiral photochemical processes.
手性分子光解过程中时间分辨光电子圆二色性的理论研究
光电子圆二色性(PECD)是用圆偏振光电离随机取向手性分子时光电子角分布的前后不对称现象,是研究电子基态分子手性性质的一种成熟方法。在此,我们开发了一种预测化学反应时间分辨 PECD (TRPECD) 的计算策略,并在 1-iodo-2-methylbutane 的光解离中演示了该方法。我们的方法将中性分子和单电离分子相关势能面的多构型量子化学计算与原子分子动力学(AIMD)计算相结合。借助基于 ePolyScat 中实施的施温格变分原理的电子-分子散射计算,沿 AIMD 轨迹计算了 PECD 参数。我们的计算是针对通过气体中的低阶谐波发生而获得的两个探针波长(133 和 160 nm)进行的。结果表明,TRPECD 是一种高度灵敏的光化学反应动力学探针。最有趣的是,我们发现 TRPECD 会沿着光解离坐标多次改变符号,这与最近关于 CHBrFI 的实验一致[Svoboda 等人,"化学反应的飞秒光电子圆二色性",《科学进展》8,eabq2811 (2022)]。本研究中介绍的计算方案具有通用性,可随时应用于其他手性光化学过程。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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