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基于含时密度泛函紧束缚方法的用于系间窜越的非绝热分子动力学实现

Implementation of Nonadiabatic Molecular Dynamics for Intersystem Crossing Based on a Time-Dependent Density-Functional Tight-Binding Method.

作者信息

Ohno Shota, Uratani Hiroki, Nakai Hiromi

机构信息

Department of Chemistry and Biochemistry, School of Advanced Science and Engineering, Waseda University, 3-4-1 Okubo, Shinjuku, Tokyo 169-8555, Japan.

Department of Molecular Engineering, Graduate School of Engineering, Kyoto University, Kyoto Daigaku-Katsura, Nishikyo, Kyoto 615-8510, Japan.

出版信息

J Phys Chem A. 2024 Jul 25;128(29):5999-6009. doi: 10.1021/acs.jpca.4c02422. Epub 2024 Jul 11.

Abstract

Intersystem crossing (ISC) and internal conversion (IC) are types of nonadiabatic transitions that play important roles in a wide range of fields, including photochemistry, photophysics, and photobiology. The nonadiabatic molecular dynamics (NA-MD) method is a powerful tool for computational simulations of dynamic phenomena involving nonadiabatic transitions. In this study, we implemented the NA-MD method, which treats ISC and IC on an equal footing, where the electronic structure is treated at the level of the time-dependent (TD) density-functional tight-binding (DFTB) method, a low-cost semiempirical analog of TD density functional theory (DFT). In particular, the spin-orbit coupling calculation algorithm was implemented in the TD-DFTB framework, and the results showed trends similar to those obtained using TD-DFT. In addition, the NA-MD method successfully reproduced ultrafast ISC of 2-nitronaphthalene.

摘要

系间窜越(ISC)和内转换(IC)是非绝热跃迁的类型,在包括光化学、光物理和光生物学在内的广泛领域中发挥着重要作用。非绝热分子动力学(NA-MD)方法是用于涉及非绝热跃迁的动态现象计算模拟的强大工具。在本研究中,我们实现了NA-MD方法,该方法对ISC和IC一视同仁,其中电子结构在含时(TD)密度泛函紧束缚(DFTB)方法的层面上进行处理,DFTB是TD密度泛函理论(DFT)的一种低成本半经验近似方法。特别地,在TD-DFTB框架中实现了自旋轨道耦合计算算法,结果显示出与使用TD-DFT获得的结果相似的趋势。此外,NA-MD方法成功再现了2-硝基萘的超快ISC。

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