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Acetone as a polar cosolvent for pyridinium-based ionic liquids

机译:丙酮作为吡啶基离子液体的极性共溶剂

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This work reports transport and structure properties of the three pyridinium-based ionic liquids (RTILs) – N -butylpyridinium hexafluorophosphate [BPY][PF _(6) ], N -butylpyridinium trifluoromethanesulfonate [BPY][TF] and N -butylpyridinium bis(trifluoromethanesulfonyl)imide [BPY][TFSI] – in their mixtures with acetone (ACET). The ionic conductivity maximum occurs at 10 mol% RTIL, irrespective of the anion. The absolute ionic conductivity value of [BPY][TF] is higher than those of other RTILs. This is explained by a weaker cation-anion binding than that in [BPY][PF _(6) ] and smaller anion size than that of [BPY][TFSI]. All the investigated RTILs are infinitely miscible with ACET, which boosts their diffusivity and conductivity. A small viscosity of ACET favors a drastic viscosity decay in the RTIL–ACET mixtures. Structure analysis (radial distribution functions, ionic clusters) of the mixtures are in line with their transport properties providing a reliable microscopic interpretation of the observed macroscopic properties. As a molecular co-solvent, ACET constitutes an interesting alternative and competitor to more intensively investigated liquids.
机译:该工作报告了三种基于吡啶基离子液体(RTIL) - N-萘基吡啶硫磷酸氢磷酸(RTIL)的运输和结构性质[BPY] [PF _(6)],N-丁基吡啶甲烷磺酸盐[BPY] [TF]和N-丁基吡啶鎓BIS(三氟甲磺酰基)酰亚胺[BPY] [TFSI] - 在它们的混合物中用丙酮(血管)。无论阴离子如何,离子电导率最大化在10mol%RTIL时发生。 [BPY] [TF]的绝对离子电导率值高于其他RTILS。这是通过比[BPY] [PF _(6)]和较小的阴离子大小的阳离子 - 阴离子结合来解释,而不是比[BPY] [TFSI]更小的阴离子尺寸。所有研究的RTILs都是无限的acex混溶,促进它们的扩散和电导率。螺射粘度的小粘度有利于RTIL-acet混合物中的剧烈粘度衰减。混合物的结构分析(径向分布函数,离子簇)均符合其运输特性,提供所观察到的宏观性质的可靠微观解释。作为分子共溶剂,ACET构成了一个有趣的替代品和竞争对手,以更强烈地研究液体。

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