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The magic of aqueous solutions of ionic liquids: ionic liquids as a powerful class of catanionic hydrotropes

机译:离子液体水溶液的魔力:离子液体是一类强大的阳离子水溶助长剂

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摘要

Hydrotropes are compounds able to enhance the solubility of hydrophobic substances in aqueous media and therefore are widely used in the formulation of drugs, cleaning and personal care products. In this work, it is shown that ionic liquids are a new class of powerful catanionic hydrotropes where both the cation and the anion synergistically contribute to increase the solubility of biomolecules in water. The effects of the ionic liquid chemical structures, their concentration and the temperature on the solubility of two model biomolecules, vanillin and gallic acid were evaluated and compared with the performance of conventional hydrotropes. The solubility of these two biomolecules was studied in the entire composition range, from pure water to pure ionic liquids, and an increase in the solubility of up to 40-fold was observed, confirming the potential of ionic liquids to act as hydrotropes. Using dynamic light scattering, NMR and molecular dynamics simulations, it was possible to infer that the enhanced solubility of the biomolecule in the IL aqueous solutions is related to the formation of ionic-liquid–biomolecules aggregates. Finally, it was demonstrated that hydrotropy induced by ionic liquids can be used to recover solutes from aqueous media by precipitation, simply by using water as an anti-solvent. The results reported here have a significant impact on the understanding of the role of ionic liquid aqueous solutions in the extraction of value-added compounds from biomass as well as in the design of novel processes for their recovery from aqueous media.
机译:水溶助长剂是能够增强疏水性物质在水性介质中的溶解度的化合物,因此广泛用于药物,清洁剂和个人护理产品的配制。在这项工作中,表明离子液体是一类新型的强阳离子水溶助长剂,其中阳离子和阴离子都协同作用来增加生物分子在水中的溶解度。评估了离子液体化学结构,其浓度和温度对两种模型生物分子香草醛和没食子酸溶解度的影响,并将其与常规水溶助长剂的性能进行了比较。在从纯水到纯离子液体的整个组成范围内研究了这两种生物分子的溶解度,观察到溶解度增加了多达40倍,从而证实了离子液体具有水溶助长剂的潜力。使用动态光散射,NMR和分子动力学模拟,可以推断出生物分子在IL水溶液中的溶解度提高与离子液体-生物分子聚集体的形成有关。最后,证明了由离子液体诱导的水溶性可以简单地通过使用水作为反溶剂而用于通过沉淀从水性介质中回收溶质。此处报道的结果对理解离子液体水溶液在从生物质中提取增值化合物中的作用以及从水介质中回收它们的新方法的设计中具有重大影响。

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