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从头算方法全分辨振动模式下β-胡萝卜素的光学吸收光谱模拟。

Simulation of Ab Initio Optical Absorption Spectrum of β-Carotene with Fully Resolved and Vibrational Normal Modes.

机构信息

Institute of Chemical Physics, Vilnius University, Sauletekio Avenue 9-III, LT-10222 Vilnius, Lithuania.

出版信息

J Phys Chem A. 2022 Jan 20;126(2):180-189. doi: 10.1021/acs.jpca.1c06115. Epub 2022 Jan 5.

Abstract

The electronic absorption spectrum of β-carotene (β-Car) is studied using quantum chemistry and quantum dynamics simulations. Vibrational normal modes were computed in optimized geometries of the electronic ground state and the optically bright excited state using the time-dependent density functional theory. By expressing the -state normal modes in terms of the ground-state modes, we find that no one-to-one correspondence between the ground- and excited-state vibrational modes exists. Using the ab initio results, we simulated the β-Car absorption spectrum with all 282 vibrational modes in a model solvent at 300 K using the time-dependent Dirac-Frenkel variational principle and are able to qualitatively reproduce the full absorption line shape. By comparing the 282-mode model with the prominent 2-mode model, widely used to interpret carotenoid experiments, we find that the full 282-mode model better describes the high-frequency progression of carotenoid absorption spectra; hence, vibrational modes become highly mixed during the → optical excitation. The obtained results suggest that electronic energy dissipation is mediated by numerous vibrational modes.

摘要

使用量子化学和量子动力学模拟研究了β-胡萝卜素(β-Car)的电子吸收光谱。在电子基态和光学亮激发态的优化几何形状下,使用含时密度泛函理论计算了振动正则模态。通过用基态模态表示激发态正则模态,我们发现基态和激发态振动模态之间不存在一一对应关系。利用从头算结果,我们在模型溶剂中 300 K 下使用含时 Dirac-Frenkel 变分原理模拟了β-Car 吸收光谱,并考虑了所有 282 个振动模态,能够定性地重现完整的吸收线形状。通过比较具有广泛用于解释类胡萝卜素实验的 2 模式模型的 282 模式模型,我们发现完整的 282 模式模型更好地描述了类胡萝卜素吸收光谱的高频进展;因此,在 → 光激发过程中,振动模式高度混合。所得结果表明,电子能量耗散是由众多振动模式介导的。

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