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Thermophysical and Spectroscopic Studies of Pure 1-Butyl-3-methylimidazolium Tetrafluoroborate and Its Aqueous Mixtures

机译:纯的1-丁基-3-甲基咪唑四氟硼酸酯及其水溶液混合物的热物理和光谱研究

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Intermolecular interactions in the aqueous mixtures of the room temperature ionic liquid, 1-butyl-3-methylimidazolium tetrafluoroborate ([BMIM][BF_4]), have been studied. The thermophysical properties: density q, speed of sound u, specific conductivity j and refractive index n_D have been measured over the whole composition range at different temperatures (293.15–323.15 K) and are discussed. The results from thermophysical measurements are explained with the help of spectroscopy. In order to interpret the nature of molecular interactions occurring between [BMIM][BF_4] and water molecules, as well as to identify the moieties in which interactions are taking place, ~1H, ~(13)C NMR and FT-IR spectra of the solutions have been studied. Excess molar volume V~E, excess molar isentropic compressibility K_S~E, partial molar excess volume V_i~E, partial molar excess isentropic compressibility K_(S;i)~E, deviation in specific conductivity ?κ, and deviation in refractive index ?R have also been determined and analyzed to have a better understanding of the interactions taking place between the different components. Additionally, the excess ultrasonic speed u~E and excess isentropic compressibility k_S~E, in terms of volume fractions, have been calculated and analyzed. It has been observed that temperature has a significant effect on the thermophysical properties of the studied system. Spectroscopic measurements confirm the disruption of ion-pair interactions of [BMIM][BF_4] and hydrogen-bonded network of water in the aqueous mixture of [BMIM][BF_4].
机译:研究了室温离子液体1-丁基-3-甲基咪唑鎓四氟硼酸盐([BMIM] [BF_4])的水性混合物中的分子间相互作用。在不同温度(293.15–323.15 K)下,在整个组成范围内测量了热物理性质:密度q,声速u,比电导j和折射率n_D并进行了讨论。热物理测量的结果在光谱学的帮助下进行了解释。为了解释[BMIM] [BF_4]与水分子之间发生的分子相互作用的性质,以及识别发生相互作用的部分,使用了〜1H,〜(13)C NMR和FT-IR光谱解决方案已经过研究。过量摩尔体积V〜E,过量摩尔等熵压缩率K_S〜E,部分摩尔过量体积V_i〜E,部分摩尔过量等熵压缩率K_(S; i)〜E,比电导率偏差Δκ和折射率偏差δ还对R进行了确定和分析,以更好地了解不同组件之间发生的相互作用。另外,已经计算和分析了以体积分数计的过剩超声波速度u〜E和过剩等熵压缩率k_S〜E。已经观察到温度对所研究系统的热物理性质具有显着影响。光谱测量证实[BMIM] [BF_4]的水性混合物中[BMIM] [BF_4]的离子对相互作用和水的氢键网络的破坏。

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