pH、光响应和功能化表面活性离子液体的合成、性质及应用研究进展

Monika Jain , Omar El Seoud , Suresh Kumar Kailasa , Naved I. Malek
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引用次数: 4

摘要

表面活性离子液体(SAILs)是一类比传统表面活性剂具有定制结构和巨大应用潜力的离子液体,具有刺激响应特性。研究功能化(pH和光响应)帆的动力是它们的动态特性,具有巨大的潜在应用范围,例如在净化、纳米技术、聚合物化学和药物输送等方面。对其分子结构、功能或刺激反应基团(包括头部基团、尾部和阴离子)与其在气-液界面上的溶液性质之间的关系有了清晰的认识,是sail领域取得进展的基础。本文综述了不同研究小组设计功能化(pH和光响应)帆的合成策略,并阐述了它们的物理化学性质,包括表面活性性质和形成与应用相关的自组装结构的能力。在广泛的应用中,我们的兴趣仅限于去污和药物输送,以及纳米技术。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Recent advances in synthesis, properties and applications of pH, light-responsive and functionalized surface active ionic liquids

Surface active ionic liquids (SAILs) with stimuli-responsive properties is among the class of Ionic liquids (ILs) that have tailor made structures and enormous application potential than the traditional surfactants. The impetus for studying the functionalized (pH and light responsive) SAILs is their dynamic properties added with enormous scope of potential applications, e.g., in decontamination, nanotechnology, polymer chemistry, and drug delivery to name a few. The progress in the field of SAILs rests on a clear understanding of the relationship between their molecular structure, functionality or stimuli responsive group involved within the head group, tail and within the anion and its solution properties at the air-solution interface. This review article constitutes the synthetic strategies adopted by different groups to design functionalized (pH and Light-responsive) SAILs and elaborates their physico-chemical properties including surface-active properties and their ability to form self-assembled structures that are relevant to applications. Out of the wide spectrum of applications, our interest is limited to the decontamination and drug delivery, and nanotechnology.

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