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The relationship between solvent polarity and molar volume in room-temperature ionic liquids

机译:室温离子液体中溶剂极性与摩尔体积的关系

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摘要

Solvent polarity is a subject of great interest to chemists. A significant component of a solvent's polarity is its capacity for nonspecific electrostatic interactions, which is often parameterized using the dielectric constant epsilon or the Kamlet-Taft dipolarity/polarizability parameter pi*. Recent theoretical work has established a connection between the molar volume of an ionic liquid and its capacity for nonspecific electrostatic interactions with a neutral dipolar solute. In this work, we make use of a recently-developed theoretical method to estimate the molar volume of a series of ionic liquids, and explore the variation of experimentally-measured epsilon and pi* values with molar volume. Both variables are found to vary with molar volume, and we observe an anomaly in the behavior of pi* that offers insight on the nanoscale inhomogeneity of ionic liquids. An important outcome of this work is a simple scheme for the estimation of the relative polarities of ionic liquids; while not quantitatively accurate, the scheme permits prediction of the change in solvent polarity on ionic substitution or derivitization. The approach is sufficiently simple that for most commonly-used ionic liquids it can be implemented on a pocket calculator in a matter of minutes, making it a practical aid to researchers seeking to design task-specific ionic liquids.
机译:溶剂极性是化学家非常感兴趣的主题。溶剂极性的重要组成部分是其非特异性静电相互作用的能力,通常使用介电常数ε或Kamlet-Taft双极性/极化率参数pi *对其进行参数化。最近的理论工作在离子液体的摩尔体积与其与中性偶极溶质的非特异性静电相互作用的能力之间建立了联系。在这项工作中,我们利用最新开发的理论方法来估算一系列离子液体的摩尔体积,并探索实验测量的ε和pi *值随摩尔体积的变化。发现这两个变量都随摩尔体积而变化,并且我们观察到pi *的行为异常,这为离子液体的纳米级不均匀性提供了见识。这项工作的重要成果是估算离子液体相对极性的简单方案。尽管在定量上不准确,但该方案允许预测离子取代或衍生化时溶剂极性的变化。该方法非常简单,以至于对于大多数常用的离子液体,它可以在几分钟内在袖珍计算器上实现,从而为寻求设计特定任务的离子液体的研究人员提供了实用的帮助。

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