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首页> 外文期刊>Journal of chemical theory and computation: JCTC >Simulating One-Photon Absorption and Resonance Raman Scattering Spectra Using Analytical Excited State Energy Gradients within Time-Dependent Density Functional Theory
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Simulating One-Photon Absorption and Resonance Raman Scattering Spectra Using Analytical Excited State Energy Gradients within Time-Dependent Density Functional Theory

机译:在时变密度泛函理论中使用分析激发态能量梯度模拟单光子吸收和共振拉曼散射光谱

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摘要

A parallel implementation of analytical time-dependent density functional theory gradients is presented for the quantum chemistry program NWChem. The implementation is based on the Lagrangian approach developed by Furche and Ahlrichs. To validate our implementation, we first calculate the Stokes shifts for a range of organic dye molecules using a diverse set of exchange-correlation functionals (traditional density functionals, global hybrids, and range-separated hybrids) followed by simulations of the one-photon absorption and resonance Raman scattering spectrum of the phenoxyl radical, the well-studied dye molecule rhodamine 6G, and a molecular host-guest complex (TTFCCBPQT~(4+)). The study of organic dye molecules illustrates that B3LYP and CAM-B3LYP generally give the best agreement with experimentally determined Stokes shifts unless the excited state is a charge transfer state. Absorption, resonance Raman, and fluorescence simulations for the phenoxyl radical indicate that explicit solvation may be required for accurate characterization. For the host-guest complex and rhodamine 6G, it is demonstrated that absorption spectra can be simulated in good agreement with experimental data for most exchange-correlation functionals. However, because one-photon absorption spectra generally lack well-resolved vibrational features, resonance Raman simulations are necessary to evaluate the accuracy of the exchange-correlation functional for describing a potential energy surface.
机译:针对量子化学程序NWChem,提出了一种与时间相关的密度泛函理论梯度的解析解析方法。该实现基于Furche和Ahlrichs开发的Lagrangian方法。为了验证我们的实现,我们首先使用一组交换相关函数(传统密度函数,全局杂化和范围分隔的杂化)计算一系列有机染料分子的斯托克斯位移,然后模拟单光子吸收苯氧基,染料分子若丹明6G和分子客体复合物(TTFCCBPQT〜(4+))的共振拉曼散射光谱。对有机染料分子的研究表明,除非激发态为电荷转移态,否则B3LYP和CAM-B3LYP通常与实验确定的斯托克斯位移具有最佳的一致性。苯氧基自由基的吸收,共振拉曼和荧光模拟表明,可能需要明确的溶剂化才能进行准确表征。对于主体-客体复合物和若丹明6G,已证明可以模拟吸收光谱,与大多数交换相关功能的实验数据吻合良好。但是,由于单光子吸收光谱通常缺乏良好解析的振动特征,因此共振拉曼仿真对于评估用于描述势能面的交换相关函数的准确性是必需的。

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