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Simulation of Vacuum UV Absorption and Electronic Circular Dichroism Spectra of Methyl Oxirane: the Role of Vibrational Effects

机译:甲基环氧乙烷的真空紫外吸收和电子圆二色性光谱的模拟:振动效应的作用

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摘要

Vibrationally resolved one-photon absorption and electronic circular dichroism spectra of (R)-methyl oxirane were calculated with different electronic and vibronic models selecting, through an analysis of the convergence of the results, the best compromise between reliability and computational cost. Linear-response TD-DFT/CAM-B3LYP/SNST electronic computations in conjunction with the simple vertical gradient vibronic model were chosen and employed for systematic comparison with the available experimental data. Remarkable agreement between simulated and experimental spectra was achieved for both one photon absorption and circular dichroism concerning peak positions, relative intensities, and general spectral shapes considering the computational efficiency of the chosen theoretical approach. The significant improvement of the results with respect to smearing of vertical electronic transitions by phenomenological Gaussian functions and the possible inclusion of solvent effects by polarizable continuum models at a negligible additional cost paves the route toward the simulation and analysis of spectral shapes of complex molecular systems in their natural environment.
机译:(R)-甲基环氧乙烷的振动分辨单光子吸收和电子圆二色性光谱是通过不同的电子模型和振动模型计算得出的,并通过分析结果的收敛性,在可靠性和计算成本之间取得了最佳折衷。选择线性响应TD-DFT / CAM-B3LYP / SNST电子计算以及简单的垂直梯度振动模型,并将其用于与现有实验数据进行系统比较。考虑到所选理论方法的计算效率,对于一个光子吸收和圆二色性,在峰和位置,相对强度和一般光谱形状方面都实现了模拟和实验光谱之间的显着一致性。现象学的高斯函数对垂直电子跃迁的拖尾结果的显着改善,以及可极化的连续谱模型可能以可忽略的额外成本包含溶剂效应,为模拟和分析复杂分子系统的光谱形状铺平了道路。他们的自然环境。

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