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Hexadecyl-Containing Organic Salts as Novel Organogelatorsfor Ionic Eutectic and Molecular Liquids

机译:含十六烷基有机盐的新型有机胶凝剂用于离子液体共晶液体和分子液体

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摘要

The incorporation of a hexadecyl group on imidazolium, pyridinium, and pyrrolidinium scaffolds produces low-molecular-weight ionic organogelators that can gel several types of ionic liquids, deep eutectic solvents (DESs), and several molecular organic solvents. Minimum gelator concentrations fall in the 0.9–15.0% (w/v) range, with the lower end of the gelator concentrations observed in the gelation of DESs. On the basis of polarized optical microscopy, differential scanning calorimetry, and X-ray data, crystallization of these salts appear to produce high-surface-area crystals, which generate sufficiently stable three-dimensional networks that are capable of trapping the solvent molecules. Importantly, the nature of the fluid component of the gel appears to have a profound effect on the morphology of the crystallized organogelators. On the other hand, the organogelators appeared to modulate phase transitions of the liquids.
机译:在咪唑鎓,吡啶鎓和吡咯烷鎓骨架上引入十六烷基会产生低分子量离子有机胶凝剂,该胶凝剂可以胶凝几种类型的离子液体,深低共熔溶剂(DES)和几种分子有机溶剂。最低胶凝剂浓度在0.9-15.0%(w / v)范围内,而在DES凝胶中观察到的胶凝剂浓度较低。在偏振光学显微镜,差示扫描量热法和X射线数据的基础上,这些盐的结晶似乎产生了高表面积晶体,该晶体产生了足够稳定的三维网络,能够捕获溶剂分子。重要的是,凝胶的流体成分的性质似乎对结晶的有机胶凝剂的形态具有深远的影响。另一方面,有机胶凝剂似乎可以调节液体的相变。

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