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Speed of sound in ionic liquids with a common ion as a function of pressure and temperature

机译:具有常见离子的离子液体中的声速作为压力和温度的函数

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The speed of sound was determined within the temperature and pressure intervals (283.15-343.15) K and (0.1-95) MPa for a set of ionic liquids with a common ion. The selected ionic liquids were composed by the bis(trifluomethylsulfonyl) imide anion with 1-butylmethylpiperidinium, 1-butylmethylpyrrolidinium, triethylsulfonium and 1-butylpyridinium cations, and by the 1-butyl-3methylimidazolium cation with dicyanamide, hexafluoroantimonate, trifluoromethanesulfonate and methylsulfate anions. The analysis of the experimental data together with those available in literature reveals that changes in the chemical structure of anion have a much stronger influence over this magnitude than those in the cation. In addition, a clear inverse correlation between speed of sound and the ionic liquid molar mass was detected. Since data against temperature and pressure are available, the speed of sound derivatives against these variables were also determined; low values as compared with other liquids were obtained, with no clear correlation against chemical nature of the ionic compound. (C) 2017 Elsevier Ltd.
机译:对于具有共同离子的一组离子液体的温度和压力间隔(283.15-343.15)K和(0.1-95)MPa,测定声速。所选离子液体由双(三氟甲基磺酰基)酰亚胺阴离子与1-丁基甲基哌啶,1-丁基甲基吡咯烷鎓,三乙基锍和1-丁基吡啶鎓阳离子组成,并通过二丁基-3甲基咪唑阳离子用二氰胺,六氟酰亚胺,三氟甲磺酸盐和甲基硫酸甲酯阴离子。与文献中可用的实验数据的分析表明,阴离子的化学结构的变化具有比阳离子中的大小更强烈的影响力。另外,检测到声速和离子液体摩尔质量之间的明显逆相关性。由于可获得针对温度和压力的数据,因此还确定了对这些变量的声音衍生物的速度;与其他液体相比,低值是低值,没有明确的与离子化合物的化学性质相关的相关性。 (c)2017年elestvier有限公司

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