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A Monte Carlo-quantum mechanics study of the solvatochromic shifts of the lowest transition of benzene

机译:苯最低跃迁的溶剂变色位移的蒙特卡洛量子力学研究

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We examine the spectroscopic red shifts that occur when benzene is dissolved in (liquid) benzene, in cyclohexane, in carbon tetrachloride, and in water. For this we develop a mixed classical/quantum model in which uncorrelated structures are obtained from Monte Carlo simulation, and these structures are then used for quantum chemical calculations including the chromophore and all solvent molecules within the first radial distribution maxima. We discuss the effects of different sampling techniques and the inclusion of more, or less, solvent molecules in the quantum chemical supermolecule calculation. We obtain shifts of -306 cm(-1), -268 cm(-1), -456 cm(-1), and -122 cm(-1), in excellent agreement with the experimentally observed shifts of -332 cm(-1), -308 cm(-1), -458 cm(-1), and -143 cm(-1), respectively. We note that the larger shift observed in carbon tetrachloride that is not expected on the basis of larger dielectric constant results from small contributions of the charge transfer type from solvent to solute. (C) 2000 American Institute of Physics. [S0021-9606(00)51716-4]. [References: 46]
机译:我们检查了当苯溶解在(液体)苯,环己烷,四氯化碳和水中时发生的光谱红移。为此,我们开发了混合经典/量子模型,其中从蒙特卡洛模拟获得了不相关的结构,然后将这些结构用于量子化学计算,包括生色团和第一径向分布最大值内的所有溶剂分子。我们讨论了不同采样技术的影响以及在量子化学超分子计算中包含或多或少的溶剂分子的影响。我们获得-306 cm(-1),-268 cm(-1),-456 cm(-1)和-122 cm(-1)的位移,与实验观察到的-332 cm(-1)的位移非常吻合-1),-308 cm(-1),-458 cm(-1)和-143 cm(-1)。我们注意到,在四氯化碳中观察到的较大位移(这是基于较大介电常数所无法预期的)是由于电荷转移类型从溶剂到溶质的贡献很小。 (C)2000美国物理研究所。 [S0021-9606(00)51716-4]。 [参考:46]

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