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溶质 - 溶剂静电相互作用对超临界二氧化碳中溶剂化显色位移的影响。

The effects of solute-solvent electrostatic interactions on solvatochromic shifts in supercritical CO2.

作者信息

Nugent Severin, Ladanyi Branka M

机构信息

Department of Chemistry, Colorado State University, Fort Collins, Colorado 80523, USA.

出版信息

J Chem Phys. 2004 Jan 8;120(2):874-84. doi: 10.1063/1.1630301.

Abstract

Solvent clustering around attractive solutes is an important feature of supercritical solvation. We examine here the effects of the local density enhancement on solvatochromic shifts in electronic absorption and emission spectra in supercritical CO2. We use molecular dynamics (MD) simulation to study the spectral line shifts for model diatomic solutes that become more polar upon electronic excitation. The electronic transition is modeled as either a change from a quadrupolar to a dipolar solute charge distribution or as an increase in the magnitude of the solute dipole. Our main focus is on the density dependence of the line shifts at 320 K, which corresponds to about 1.05 times the solvent critical temperature, Tc, but results for higher temperatures are also obtained in order to determine the behavior of the line shifts in the absence of local density enhancement. We find that the extent of local density enhancement at 1.05Tc is strongly correlated with solute-solvent electrostatic attraction and that the density dependence of the emission line shifts resembles the behavior of the effective local densities, rho(eff), obtained from the first-shell coordination numbers. The differences that are seen are shown to be due to solute-solvent orientational correlations which provide an additional source of enhancement for electrostatic solvation energies and spectral line shifts.

摘要

围绕吸引性溶质的溶剂聚集是超临界溶剂化的一个重要特征。我们在此研究局部密度增强对超临界二氧化碳中电子吸收和发射光谱的溶剂化变色位移的影响。我们使用分子动力学(MD)模拟来研究模型双原子溶质在电子激发时变得更具极性的光谱线位移。电子跃迁被建模为从四极溶质电荷分布到偶极溶质电荷分布的变化,或者溶质偶极矩大小的增加。我们主要关注320 K时线位移的密度依赖性,该温度约为溶剂临界温度Tc的1.05倍,但也获得了更高温度下的结果,以确定在没有局部密度增强时线位移的行为。我们发现,在1.05Tc时局部密度增强的程度与溶质 - 溶剂静电吸引力密切相关,并且发射线位移的密度依赖性类似于从第一壳层配位数获得的有效局部密度rho(eff)的行为。所观察到的差异表明是由于溶质 - 溶剂取向相关性,这为静电溶剂化能和光谱线位移提供了额外的增强来源。

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