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首页> 外文期刊>International Journal of Quantum Chemistry >SOLVATOCHROMISM OF THE PI-ASTERISK[-N TRANSITION OF ACETONE BY COMBINED QUANTUM MECHANICAL CLASSICAL MECHANICAL CALCULATIONS
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SOLVATOCHROMISM OF THE PI-ASTERISK[-N TRANSITION OF ACETONE BY COMBINED QUANTUM MECHANICAL CLASSICAL MECHANICAL CALCULATIONS

机译:组合量子力学-经典力学计算的PI-芳烃溶剂化

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摘要

The solvent shift of the pi* <-- n transition of acetone in water, acetonitrile, and tetrachloromethane was calculated in a combined quantum mechanical-classical mechanical approach, using both dielectric continuum and explicit, polarizable molecular solvent models. The explicit modeling of solvent polarizability allows for a separate analysis of electrostatic, induction, and dispersion contributions to the shifts. The calculations confirm the qualitative theories about the mechanisms behind the blue shift in polar solvents and the red shift in nonpolar solvents, the solvation of the ground state due to electrostatic interactions being preferential in the former, and favorable dispersion interaction with the excited state, in the latter case. Good quantitative agreement for the solvent shift between experiment (+ 1700, + 400, and -350 cm(-1) in water, acetonitrile, and tetrachloromethane, respectively) and the explicit solvent model ( + 1821, + 922, and - 381 cm(-1)) was reached through a modest Monte Carlo sampling of the solvent degrees of freedom. A consistent treatment of the solvent could only be realized in the molecular solvent model. The dielectric-only model needs reparameterization for each solvent. (C) 1996 John Wiley & Sons, Inc. [References: 38]
机译:使用介电连续谱和明确的可极化分子溶剂模型,通过组合量子力学-经典力学方法,计算了丙酮在水,乙腈和四氯甲烷中的π* <-n跃迁的溶剂位移。溶剂极化率的显式建模允许对静电,感应和分散对位移的贡献进行单独分析。这些计算证实了有关极性溶剂中的蓝移和非极性溶剂中的红移,由静电作用引起的基态溶剂化在前者中是优先的,以及与激发态的良好色散相互作用等背后的机理的定性理论。后一种情况。在实验(分别在水,乙腈和四氯甲烷中分别为+ 1700,+ 400和-350 cm(-1))与显式溶剂模型(分别为+ 1821,+ 922和-381 cm)之间的溶剂转移具有良好的定量一致性(-1))是通过对溶剂自由度进行适度的蒙特卡洛采样获得的。仅在分子溶剂模型中才能实现对溶剂的一致处理。仅电介质模型需要对每种溶剂进行重新参数化。 (C)1996 John Wiley&Sons,Inc. [参考:38]

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