Change of hydrogen bonding structure in ionic liquid mixtures by anion type

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초록

Ionic liquid mixtures have gained attention as a way of tuning material properties continuously with composition changes. For some mixture systems, physicochemical properties such as excess molar volume have been found to be significantly different from the value expected by linear interpolation, but the origin of this deviation is not well understood yet. The microstructure of the mixture, which can range from an ideal mixture of two initial consisting ionic liquids to a different structure from those of pure materials, has been suggested as the origin of the observed deviation. The structures of several different ionic liquid mixtures are studied by IR spectroscopy to confirm this suggestion, as a particular IR absorption band (nu C(2)-D) for the moiety participating in the hydrogen bonding changes sensitively with the change of the anion in the ionic liquid. The absorbance of nu C(2)-D changes proportionally with the composition, and a relatively small excess molar volume is observed for the mixtures containing an electronegative halide anion. By contrast, the absorbance changes nonlinearly, and the excess molar volumes are larger for the mixtures of which one of the anions has multiple interaction sites. Published by AIP Publishing.

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KERR-EFFECT SPECTRAMOLECULAR-DYNAMICSBINARY-MIXTURESNANOSTRUCTURAL ORGANIZATIONCOMMON IONSPECTROSCOPYTRANSPORTBEHAVIOR
제목
Change of hydrogen bonding structure in ionic liquid mixtures by anion type
저자
Cha, SeoncheolKim, Doseok
DOI
10.1063/1.5010067
발행일
2018-05-21
유형
Article
저널명
Journal of Chemical Physics
148
19