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Dicationic imidazolium-based dicarboxylate ionic liquids: Thermophysical properties and solubility

机译:基于咪唑鎓的二羧酸二羧酸离子液体:热物理性质和溶解度

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Dicationic ionic liquids have been attracting attention due to their high thermal storage density, which is attributed to an increase in the number of cations. However, there is no information about the effect that the dianionic structure has on the thermophysical properties of dicationic ionic liquids. Thus in this study, imidazolium-based dicationic dicarboxylate ionic liquids (C-n(MIM)(2)[Cm(CO2)(2)], n = 4, 6, 8, 10 and m = 0, 1, 2, 3, 4, 5) were synthesized and their thermal properties were determined. The results showed that the dicarboxylate's spacer length has no effect on the melting point; however, a trend in which the heat of fusion of ionic liquids increases with the increase in the spacer chain length of the dication and dianions was observed. Moreover, dicationic dicarboxylate ionic liquids have a greater heat capacity than monocationic ionic liquids, but a smaller heat capacity than analogous dicationic ionic liquids with bromine. Our results also showed that the anion has a strong effect on the heat capacity of dicationic ionic liquids. In terms of thermal storage, [C-6(MIM)(2)][C-2] and [C-6(MIM)(2)] [C-5] were the most promising ionic liquids, because they have thermal storage higher than monocationic ILs and mineral oil and compared with analogues ILs with bromine, they are potentially less toxic. All of the ionic liquids were soluble in protic polar solvents and DMSO, and were insoluble in aprotic and nonpolar-polar solvents. The study and determination of these properties is extremely important for future applications. (C) 2018 Elsevier B.V. All rights reserved.
机译:由于其高热储存密度,Daticatic离子液体一直引起注意,这归因于阳离子数量的增加。然而,没有关于DianionIC结构对DIACIC离子液体热物理性质的影响的信息。因此,在该研究中,基于咪唑鎓的Dicarboxy ate离子液体(CN(MIM)(2)[cm(CO 2)(2)],n = 4,6,8,10和m = 0,1,2,3,合成4,5)并测定其热性质。结果表明,二羧酸二羧酸盐的间隔率对熔点没有影响;然而,在观察到的分离和探剂的间隔链长度的增加,离子液体融合热增加的趋势。此外,Dicatic二羧酸离子液体具有比单子离子液体更大的热容量,而是比具有溴的类似致密性离子液体的热容量较小。我们的研究结果还表明,阴离子对DICTICIC离子液体的热量有很大的影响。就热储存而言,[C-6(MIM)(2)] [C-2]和[C-6(MIM)(2)] [C-5]是最有前途的离子液体,因为它们具有热量储存高于单子系ils和矿物油,与用溴的类似物IL比相比,它们可能不那么毒性。所有离子液体均可溶于质子极性溶剂和DMSO,并不溶于非质子和非极性溶剂。这些属性的研究和确定对于未来的应用来说非常重要。 (c)2018年elestvier b.v.保留所有权利。

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