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水相超分子共组装阴阳离子光响应刚棒状两亲分子

Aqueous Supramolecular Co-Assembly of Anionic and Cationic Photoresponsive Stiff-Stilbene Amphiphiles.

机构信息

State Key Laboratory of Chemical Biology and Drug Discovery, Department of Applied Biology and Chemical Technology, The Hong Kong Polytechnic University, Hong Kong, China.

Centre for Eye and Vision Research, 17 W Hong Kong Science Park, Hong Kong, China.

出版信息

Macromol Rapid Commun. 2022 Nov;43(21):e2200438. doi: 10.1002/marc.202200438. Epub 2022 Aug 4.

Abstract

Fabrication of macroscopic soft functional materials, such as macroscopic photoresponsive soft materials and artificial muscles, can be commonly prepared by charge screening of supramolecular assemblies with inorganic salt solutions using a shear-flow method. However, some of the charged end-groups of photoresponsive molecular amphiphiles cannot be stabilized with inorganic salt solutions to fabricate macroscopic soft materials. Stiff stilbene amphiphiles (SAs) functionalized with anionic phosphite and cationic quaternary ammonium end groups are designed and synthesized and their photochemical and supramolecular assembly properties are determined. Supramolecular co-assembly of anionic and cationic nanotubes of SAs allows to transform into nanoribbons, confirmed by transmission electron microscopy, critical aggregation concentration, and Zeta potential measurements. Nanoribbons of anionic and cationic SAs can be prepared into macroscopic soft materials with inorganic salt solutions and surprisingly also with deionized water. The macroscopic soft material of anionic and cationic SAs can be stabilized at low concentration ≈5 mm. Meanwhile, the photoresponsiveness of the macroscopic soft materials is retained to provide macroscopic morphological change upon photoirradiation. These results exhibit the feasibility in fabrication of macroscopic functional soft materials from supramolecular assembly across multiple length-scale without help of inorganic salts and offer ample opportunity in developing future soft supramolecular robotic systems.

摘要

宏观软功能材料的制备,如宏观光响应软材料和人造肌肉,通常可以通过用剪切流法用无机盐溶液对超分子组装体进行电荷屏蔽来制备。然而,一些光响应分子两亲物的带电端基不能用无机盐溶液稳定来制备宏观软材料。设计并合成了带有阴离子膦酸酯和阳离子季铵端基的刚性二苯乙烯两亲物,并确定了它们的光化学和超分子组装性质。阴离子和阳离子两亲物的超分子共组装允许形成纳米带,这通过透射电子显微镜、临界聚集浓度和 Zeta 电位测量得到证实。阴离子和阳离子 SAs 的纳米带可以用无机盐溶液和令人惊讶的是也可以用去离子水制备成宏观软材料。阴离子和阳离子 SAs 的宏观软材料可以在低浓度≈5mm 下稳定。同时,宏观软材料保留了光响应性,在光照射下提供宏观形态变化。这些结果表明,在没有无机盐帮助的情况下,从超分子组装跨越多个长度尺度制备宏观功能软材料是可行的,并为开发未来的软分子机器人系统提供了充分的机会。

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