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论拟质子离子液体电解质的丰富化学性质。

On the Rich Chemistry of Pseudo-Protic Ionic Liquid Electrolytes.

作者信息

Wylie Luke, Kéri Mónika, Udvardy Antal, Hollóczki Oldamur, Kirchner Barbara

机构信息

University of Bonn, Clausius Institute of Physical and Theoretical Chemistry, Mulliken Center for Theoretical Chemistry, Beringstr. 4, 53115, Bonn, Germany.

University of Debrecen, Department of Physical Chemistry, Egyetem tér 1, 4032, Debrecen, Hungary.

出版信息

ChemSusChem. 2023 Oct 20;16(20):e202300535. doi: 10.1002/cssc.202300535. Epub 2023 Aug 9.

Abstract

Mixing weak acids and bases can produce highly complicated binary mixtures, called pseudo-protic ionic liquids, in which a complex network of effects determines the physicochemical properties that are currently impossible to predict. In this joint computational-experimental study, we investigated 1-methylimidazole-acetic acid mixtures through the whole concentration range. Effects of the varying ionization and excess of either components on the properties, such as density, diffusion coefficients, and overall hydrogen bonding structure were uncovered. A special emphasis was put on understanding the multiple factors that govern the conductivity of the system. In the presence of an excess of acetic acid, the 1-methylimidazolium acetate ion pairs dissociate more efficiently, resulting in a higher concentration of independently moving, conducting ions. However, the conductivity measurements showed that higher concentrations of acetic acid improve the conductivity beyond this effect, suggesting in addition to standard dilution effects the occurrence of Grotthuss diffusion in high acid-to-base ratios. The results here will potentially help designing novel electrolytes and proton conducting systems, which can be exploited in a variety of applications.

摘要

混合弱酸和弱碱会产生高度复杂的二元混合物,即所谓的准质子离子液体,其中复杂的效应网络决定了目前无法预测的物理化学性质。在这项计算与实验相结合的研究中,我们研究了整个浓度范围内的1-甲基咪唑-乙酸混合物。揭示了两种组分电离变化和过量对密度、扩散系数和整体氢键结构等性质的影响。特别强调了理解控制该系统电导率的多种因素。在乙酸过量的情况下,乙酸1-甲基咪唑鎓离子对更有效地解离,导致独立移动的导电离子浓度更高。然而,电导率测量表明,更高浓度的乙酸使电导率的提高超过了这种效应,这表明除了标准稀释效应外,在高酸碱比情况下还会发生Grotthuss扩散。这里的结果可能有助于设计新型电解质和质子传导系统,可用于各种应用。

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