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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Ion-Ion Interactions and Conduction Mechanism of Highly Conductive Fluorohydrogenate Ionic Liquids
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Ion-Ion Interactions and Conduction Mechanism of Highly Conductive Fluorohydrogenate Ionic Liquids

机译:高导电性氟代氢离子液体的离子相互作用和导电机理

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摘要

Ion-ion interactions in highly conductive fluorohydrogenate ionic liquids (ILs) are discussed in this study. Low-temperature crystal structures of DMIm(FH)_2F and DMIm(FH)_3F (DMIm = 1,3-dimethylimidazolium) are determined by single-crystal X-ray diffraction to obtain the location of each ion in the crystal lattice. Interaction energies between the imidazolium cation and fluorohydrogenate anions are evaluated with the aid of quantum mechanical calculations where the configuration of the ions is taken from the crystal structures of DMIm(FH)_2F and DMIm(FH)_3F as well as the previously determined EMImFHF (EMIm = 1-ethyl-3-methylimidazolium). The calculation suggests that the interaction energies are mainly dominated by electrostatic interactions as in the cases of other imidazolium salts, and the low viscosity and high conductivity of fluorohydrogenate ILs are derived from their dynamic properties. The HF unit exchanging between fluorohydrogenate anions weakens the cation-anion interactions and produces smaller anionic diffusion species.
机译:在这项研究中讨论了高导电性氟代氢离子液体(ILs)中的离子相互作用。通过单晶X射线衍射确定DMIm(FH)_2F和DMIm(FH)_3F的低温晶体结构(DMIm = 1,3-二甲基咪唑鎓),以获得每个离子在晶格中的位置。咪唑鎓阳离子和氟代氢根阴离子之间的相互作用能通过量子力学计算来评估,其中离子的构型取自DMIm(FH)_2F和DMIm(FH)_3F的晶体结构以及先前确定的EMImFHF( EMIm = 1-乙基-3-甲基咪唑鎓)。计算表明,与其他咪唑鎓盐一样,相互作用能主要由静电相互作用主导,而氟代氢化物ILs的低粘度和高电导率是由它们的动态特性得出的。在氢氟酸根阴离子之间交换的HF单元会削弱阳离子与阴离子的相互作用,并产生较小的阴离子扩散种类。

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