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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Temperature-Induced Reversible Transition between Vesicle and Supramolecular Hydrogel in the Aqueous Oonic Liquid-β-Cyclodextrin System
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Temperature-Induced Reversible Transition between Vesicle and Supramolecular Hydrogel in the Aqueous Oonic Liquid-β-Cyclodextrin System

机译:水性离子液体-β-环糊精体系中囊泡与超分子水凝胶之间温度诱导的可逆转变

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The vesicle is found to form in the concentrated aqueous solution of ionic liquid 1-dodecyl-3-methylimidazolium bromide (C_(12)mimBr) and β-CD. By decreasing the temperature, the vesicle changes into a novel supramolecular hydrogel constructed from lamellae. The process is reversible and reproducible. The mechanism for the formation of vesicles and supramolecular hydrogel is studied by various methods. It is suggested that the main driving force is hydrogen bonding between β-CDs, β-CD and the solvent, the imidazolium headgroup of C_(12)mim~+, and the solvent. Accordingly, the basic structural features of the vesicle and supramolecular hydrogel based on ionic liquid and β-CD are illustrated. The structural evolution from vesicles to hydrogels is also discussed herein.
机译:发现在离子液体1-十二烷基-3-甲基咪唑鎓溴化物(C_(12)mimBr)和β-CD的浓缩水溶液中形成囊泡。通过降低温度,囊泡变成由薄片构成的新型超分子水凝胶。该过程是可逆的和可重复的。通过各种方法研究了囊泡和超分子水凝胶的形成机理。认为主要驱动力是β-CDs,β-CD与溶剂之间的氢键,C_(12)mim〜+的咪唑鎓头基和溶剂。因此,说明了基于离子液体和β-CD的囊泡和超分子水凝胶的基本结构特征。本文还讨论了从囊泡到水凝胶的结构演变。

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