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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Evolution of Ion-Ion Interactions and Structures in Smectic Ionic Liquid Crystals
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Evolution of Ion-Ion Interactions and Structures in Smectic Ionic Liquid Crystals

机译:离子离子相互作用和结构在近晶离子液晶中的演变

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摘要

A mixture of ionic liquids, 1,3-dimethylimidazolium 2-methoxy(2-ethoxy(2-ethoxy(2-ethoxy)))ethylphosphite ([DMIm][MPEGP]) and lithium bis(trifluoromethanesulfonyl)imide (LiTFSI), which forms an ionic liquid crystal with a superior ionic conductivity, evolves a smectic structure through ion-ion interactions as a function of LiTFSI concentration. Nuclear magnetic resonance (NMR) spectroscopy and pulsed-field-gradient (PFG) NMR examinations showed that the morphology of the structures and the strength of ion-ion interactions are closely related to the ratio of Li+/[MPEGP](-). The results revealed structures composed of Li+/[MPEGP](-)/TFSI- (approximate to 3:4:1)mainly by the Coulombic interactions between Li+ cations and phosphite head groups in [MPEGP](-) anions. NMR diffraction on PFG echo profiles revealed a cluster size of similar to 2 mu m, inversely proportional to the number of mobile [MPEGP](-) anions, and an ion diffusion on the cluster surfaces that is 1000 times faster than that in the bulk liquid. These observations suggest that the superior ionic conductivity in the mixture is mainly due to the fast ion transport on the cluster surfaces of smectic ionic liquid crystals. The variations of diffusion ratios between mobile Li+, TFSI-, [DMIm](+), and [MPEGP](-) ions indicate that these mobile ions remaining in the voids of structures preserve the bulk ionic liquid properties.
机译:的离子液体的混合物,1,3-二甲基咪唑2-甲氧基(2-乙氧基(2-乙氧基(2-乙氧基)))乙基亚磷酸酯([DMIm] [MPEGP])和锂双(三氟甲磺酰)酰亚胺锂(LiTFSI),其形成具有优异的离子传导性的离子液晶,通过演进离子 - 离子相互作用近晶结构的LiTFSI的浓度的函数。核磁共振(NMR)光谱法和脉冲场梯度(PFG)NMR检查显示所述结构的形态和离子 - 离子相互作用的强度密切相关的Li + / [MPEGP]的比值( - )。结果显示对于Li + / [MPEGP]组成的结构( - )/ TFSI-(近似于3:4:1)主要由Li +的阳离子和在[MPEGP]亚磷酸酯头基团之间的相互作用库仑( - )阴离子。上PFG回波型材NMR衍射揭示的类似的簇大小为2微米,反比于移动[MPEGP]的数目( - )的阴离子,和簇表面比快于本体1000倍在离子扩散液体。这些观察表明,在混合物中的优良的离子导电性,主要是由于近晶离子液体晶体的簇表面上的快速离子传递。 ( - )移动的Li +,TFSI-,[DMIm](+),和[MPEGP]之间的扩散率的变化离子表明,这些残留在结构的空隙移动离子保持散装离子液体的性质。

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