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首页> 外文期刊>Journal of Solution Chemistry >Density and viscosity of binary mixtures of thiocyanate ionic liquids +water as a function of temperature
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Density and viscosity of binary mixtures of thiocyanate ionic liquids +water as a function of temperature

机译:硫氰酸盐离子液体+水的二元混合物的密度和粘度随温度的变化

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Densities and viscosities have been determined for binary mixtures of the ionic liquids (ILs) 1-butyl-3-methylimidazolium thiocyanate [BMIM][SCN], or 1-butyl- 4-methylpyridinium thiocyanate [BMPy][SCN], or 1-butyl-1- methylpyrrolidinium thiocyanate [BMPYR][SCN], or 1-butyl-1-methylpiperidinium thiocyanate [BMPIP][SCN] with water over wide range of temperatures (298.15-348.15) K and ambient pressure. The thermal properties of [BMPy][SCN], i.e. glass transition temperature and the heat capacity at glass transition, have been measured using a differential scanning microcalorimetry, DSC. The decomposition of [BMPy][SCN] was detected. The density and viscosity correlations for these systems have been made using an empirical second-order polynomial and by the Vogel-Fulcher-Tammann equation, respectively. The concentration dependences have been described by polynomials. The excess molar volumes and deviations in viscosity have been calculated from the experimental values and were correlated by Redlich-Kister polynomial expansions. The variations of these parameters, with compositions of the mixtures and temperature, have been discussed in terms of molecular interactions. A qualitative analysis of the trend of properties with composition and temperature was performed. Further, the excess partial molar volumes, V ~E -1 and V ~E -2, were calculated and discussed. The isobaric expansivities (coefficient of thermal expansion), α, and the excess isobaric expansivities, α ~E, were determined for four ILs and their mixtures with water. The results indicate that the interactions of thiocyanate ILs with water is not as strong as with alcohols, which is shown by the positive/slightly negative excess molar volumes in these binary systems.
机译:已确定离子液体(IL)1-丁基-3-甲基咪唑硫氰酸盐[BMIM] [SCN]或1-丁基-4-甲基吡啶硫氰酸盐[BMPy] [SCN]的二元混合物的密度和粘度丁基-1-甲基吡咯烷硫氰酸盐[BMPYR] [SCN]或1-丁基-1-甲基硫氰酸吡啶盐[BMPIP] [SCN]在宽泛的温度(298.15-348.15)K和环境压力下用水冲洗。 [BMPy] [SCN]的热性质,即玻璃化转变温度和玻璃化转变时的热容,已使用差示扫描量热法DSC测量。检测到[BMPy] [SCN]的分解。这些系统的密度和粘度相关性已分别使用经验二阶多项式和Vogel-Fulcher-Tammann方程进行了计算。浓度相关性已通过多项式描述。从实验值计算出过量的摩尔体积和粘度偏差,并通过Redlich-Kister多项式展开进行关联。这些参数随混合物的组成和温度的变化已在分子相互作用方面进行了讨论。对性质随组成和温度的趋势进行了定性分析。此外,计算和讨论了过量的部分摩尔体积,V〜E -1和V〜E --2。确定了四个离子液体及其与水的混合物的等压膨胀系数(热膨胀系数)α和过量的等压膨胀系数α〜E。结果表明,硫氰酸盐类离子液体与水的相互作用不如与醇的相互作用强,这由这些二元体系中正/略为负的过量摩尔体积表明。

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