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非经验性模拟溶液中电子跃迁的非均匀展宽:预测查耳酮的单光子和双光子吸收光谱中的带宽形状。

Nonempirical Simulations of Inhomogeneous Broadening of Electronic Transitions in Solution: Predicting Band Shapes in One- and Two-Photon Absorption Spectra of Chalcones.

机构信息

Department of Physical and Quantum Chemistry, Faculty of Chemistry, Wrocław University of Science and Technology, Wyb. Wyspiańskiego 27, PL-50370 Wrocław, Poland.

Hebei Key Laboratory of Microstructural Material Physics, School of Science, Yanshan University, Qinhuangdao 066004, China.

出版信息

Molecules. 2017 Sep 30;22(10):1643. doi: 10.3390/molecules22101643.

Abstract

We have examined several approaches relying on the Polarizable Embedding (PE) scheme to predict optical band shapes for two chalcone molecules in methanol solution. The PE-TDDFT and PERI-CC2 methods were combined with molecular dynamics simulations, where the solute geometry was kept either as rigid, flexible or partly-flexible (restrained) body. The first approach, termed RBMD-PE-TDDFT, was employed to estimate the inhomogeneous broadening for subsequent convolution with the vibrationally-resolved spectra of the molecule in solution determined quantum-mechanically (QM). As demonstrated, the RBMD-PE-TDDFT/QM-PCM approach delivers accurate band widths, also reproducing their correct asymmetric shapes. Further refinement can be obtained by the estimation of the inhomogeneous broadening using the RBMD-PERI-CC2 method. On the other hand, the remaining two approaches (FBMD-PE-TDDFT and ResBMD-PE-TDDFT), which lack quantum-mechanical treatment of molecular vibrations, lead to underestimated band widths. In this study, we also proposed a simple strategy regarding the rapid selection of the exchange-correlation functional for the simulations of vibrationally-resolved one- and two-photon absorption spectra based on two easy-to-compute metrics.

摘要

我们已经研究了几种依赖于极化嵌入(PE)方案的方法,以预测甲醇溶液中两种查耳酮分子的光带形状。PE-TDDFT 和 PERI-CC2 方法与分子动力学模拟相结合,其中溶质几何形状保持刚性、柔性或部分柔性(受约束)。第一种方法称为 RBMD-PE-TDDFT,用于估计不均匀展宽,然后与溶液中量子力学(QM)确定的分子的振动分辨光谱进行卷积。结果表明,RBMD-PE-TDDFT/QM-PCM 方法可提供准确的带宽,还可再现其正确的不对称形状。通过使用 RBMD-PERI-CC2 方法估计不均匀展宽,可以进一步改进。另一方面,其余两种方法(FBMD-PE-TDDFT 和 ResBMD-PE-TDDFT)缺乏对分子振动的量子力学处理,导致带宽低估。在这项研究中,我们还提出了一种简单的策略,用于基于两个易于计算的指标,快速选择用于振动分辨单光子和双光子吸收光谱模拟的交换相关泛函。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3ce9/6151831/7fbfb5828b1d/molecules-22-01643-g002.jpg

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引用本文的文献

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