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离子液体中锂盐溶液的输运系数、拉曼光谱及计算机模拟

Transport coefficients, Raman spectroscopy, and computer simulation of lithium salt solutions in an ionic liquid.

作者信息

Monteiro Marcelo J, Bazito Fernanda F C, Siqueira Leonardo J A, Ribeiro Mauro C C, Torresi Roberto M

机构信息

Instituto de Química, Universidade de São Paulo, CP 26077, 05513-970, São Paulo, SP, Brazil.

出版信息

J Phys Chem B. 2008 Feb 21;112(7):2102-9. doi: 10.1021/jp077026y. Epub 2008 Jan 26.

Abstract

Lithium salt solutions of Li(CF3SO2)2N, LiTFSI, in a room-temperature ionic liquid (RTIL), 1-butyl-2,3-dimethyl-imidazolium cation, BMMI, and the (CF3SO2)2N(-), bis(trifluoromethanesulfonyl)imide anion, [BMMI][TFSI], were prepared in different concentrations. Thermal properties, density, viscosity, ionic conductivity, and self-diffusion coefficients were determined at different temperatures for pure [BMMI][TFSI] and the lithium solutions. Raman spectroscopy measurements and computer simulations were also carried out in order to understand the microscopic origin of the observed changes in transport coefficients. Slopes of Walden plots for conductivity and fluidity, and the ratio between the actual conductivity and the Nernst-Einstein estimate for conductivity, decrease with increasing LiTFSI content. All of these studies indicated the formation of aggregates of different chemical nature, as it is corroborated by the Raman spectra. In addition, molecular dynamics (MD) simulations showed that the coordination of Li+ by oxygen atoms of TFSI anions changes with Li+ concentration producing a remarkable change of the RTIL structure with a concomitant reduction of diffusion coefficients of all species in the solutions.

摘要

制备了不同浓度的Li(CF3SO2)2N(双(三氟甲磺酰)亚胺锂,LiTFSI)锂盐溶液,其溶剂为室温离子液体(RTIL),阳离子为1-丁基-2,3-二甲基咪唑鎓(BMMI),阴离子为双(三氟甲磺酰)亚胺阴离子(CF3SO2)2N(-),即[BMMI][TFSI]。测定了纯[BMMI][TFSI]及其锂盐溶液在不同温度下的热性质、密度、粘度、离子电导率和自扩散系数。还进行了拉曼光谱测量和计算机模拟,以了解传输系数中观察到的变化的微观起源。电导率和流动性的瓦尔登图斜率以及实际电导率与能斯特-爱因斯坦电导率估计值之间的比率随LiTFSI含量的增加而降低。所有这些研究都表明形成了不同化学性质的聚集体,拉曼光谱证实了这一点。此外,分子动力学(MD)模拟表明,TFSI阴离子的氧原子对Li+的配位随Li+浓度而变化,导致RTIL结构发生显著变化,同时溶液中所有物种的扩散系数降低。

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