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首页> 外文期刊>Journal of chemical theory and computation: JCTC >Time-Dependent Formulation of Resonance Raman Optical Activity Spectroscopy
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Time-Dependent Formulation of Resonance Raman Optical Activity Spectroscopy

机译:共振拉曼光学活性光谱的时间依赖性制剂

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摘要

In this work, we extend the theoretical framework recently developed for the simulation of resonance Raman (RR) spectra of medium-to-large sized systems to its chiral counterpart, namely, resonance Raman optical activity (RROA). The theory is based on a time-dependent (TD) formulation, with the transition tensors obtained as half Fourier transforms of the appropriate cross-correlation functions. The implementation has been kept as general as possible, supporting adiabatic and vertical models for the PES representation, both in Cartesian and internal coordinates, with the possible inclusion of Herzberg Teller (HT) effects. Thanks to the integration of this TD-RROA procedure within a general-purpose quantum-chemistry program, both solvation and leading anharmonicity effects can be included in an effective way. The implementation is validated on one of the smallest chiral molecule (methyloxirane). Practical applications are illustrated with three medium-size organic molecules (naproxen-OCD3, quinidine and 2-Br-hexahelicene), whose simulated spectra are compared to the corresponding experimental data.
机译:在这项工作中,我们扩展了最近开发的理论框架,用于模拟中型到大型系统的谐振拉曼(RR)光谱到其手性对应物,即共振拉曼光学活动(RROA)。该理论基于时间依赖的(TD)制剂,其过渡张量作为适当的互相关函数的半傅立叶变换。该实施已尽可能一致,支持笛卡尔和内部坐标的PES表示的绝热和垂直模型,可能包含Herzberg Teller(HT)效应。由于在通用量子化学计划中集成了这种TD-RROA程序,均可均可以有效的方式包括溶剂化和领先的AnhageNicity效应。该实施是在最小的手性分子(甲氧乙烷)之一上的验证。实际应用用三种中等大小的有机分子(NaProxen-OCD3,奎尼丁和2- Br-六丙烯)来说明,其模拟光谱与相应的实验数据进行比较。

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