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Molecular level interactions in binary mixtures of 1-ethyl 3-methylimidazolium tetrafluoroborate and water

机译:1-乙基3-甲基咪唑四氟硼酸盐与水的二元混合物中的分子水平相互作用

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摘要

In this study, structures of different water species present in binary mixtures of an ionic liquid (IL), 1-ethyl 3-methylimidazolium tetrafluoroborate ([EMIM][BF4]) and water of varying compositions have been investigated by near-infrared (NIR) spectroscopy and for the first time aggregation behavior and interactions between different species in the system have been inferred from the analyses of combination bands of NIR spectra. The relative population of different water species as well as the strength of hydrogen bonding was obtained from the analyses of peak area and peak positions of the deconvoluted -OH band of water, respectively. The ratio of the population of associated water to the population of water species bonded to IL increases sharply with increasing mole fraction of IL at X-IL > 0.40. Consequently, the excess molar volume vs. X-IL profile of the mixtures passes through a maximum. For the water species bonded to IL, analysis of the peak position showed that the strength of hydrogen bonding shows a maximum suggesting the formation of two different types of aggregates of IL below and above X-IL approximate to 0.26. The DLS measurements show that in the water-rich region of the binary systems, aggregates with hydrodynamic diameter of 354-590 nm are formed. The size of the aggregates has been found to increase with increasing amount of IL and decrease with increasing temperature. Finally, the properties of the IL-water binary mixtures have been found to be governed by the strength of IL-water bonds and population of IL-IL and water-water clusters.
机译:在这项研究中,通过近红外(NIR)研究了离子液体(IL),1-乙基3-甲基咪唑四氟硼酸盐([EMIM] [BF4])和不同组成的水的二元混合物中存在的不同水物种的结构。光谱学,并且是首次从近红外光谱组合谱带的分析中推断出系统中不同物种之间的聚集行为和相互作用。分别通过反褶积水-OH带的峰面积和峰位置分析,获得了不同水物种的相对种群以及氢键强度。在X-IL> 0.40时,随着IL的摩尔分数的增加,缔合水的数量与结合到IL的水物种的数量之比急剧增加。因此,混合物的过量摩尔体积对X-IL的曲线通过最大值。对于结合到IL的水物种,峰位置的分析表明氢键的强度显示出最大值,表明在X-IL之下和之上的两种不同类型的IL聚集体的形成约为0.26。 DLS测量表明,在二元体系的富水区域中,形成了流体动力学直径为354-590 nm的聚集体。已经发现,聚集体的大小随IL的增加而增加,而随温度增加而减小。最后,已发现IL-水二元混合物的性质受IL-水键的强度以及IL-IL和水-水团簇的数量支配。

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