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含螺吡喃基团的棒状-线团两亲分子的光响应可逆自组装。

Photoresponsive reversible self-assembly of rod-coil amphiphiles containing spiropyran groups.

机构信息

Department of Chemistry, National Demonstration Centre for Experimental Chemistry Education, Yanbian University, Yanji 133002, China.

出版信息

Soft Matter. 2023 Feb 22;19(8):1540-1548. doi: 10.1039/d2sm01690g.

Abstract

Stimuli-responsive assembly deformation is a key feature in constructing smart soft materials, which makes them versatile and autonomous. In this study, rod-coil amphiphilic compounds containing spiropyran (SP) groups were developed and synthesized to investigate their stimuli-responsive assembly in a solution system with 99% water content. In addition to photochromic phenomena, reversible light-mediated morphological alterations occurred in these molecular aggregates. Based on the different flexible chain segments of rod-coil amphiphiles, the initial assemblies underwent a dissociation-reassembly process under ultraviolet (UV) irradiation, whereupon they deformed or disassembled to assemblies. Furthermore, as the UV source was removed, the original nanostructures were gradually recovered again the ring-closing reaction process. These compounds, interestingly, can selectively combine with copper ions to produce cross-linked co-assembled nanostructures. The copper ion complex solution of rod-coil amphiphilic compounds emitted unique bright blue fluorescence, which allowed for the specific visual identification of copper ions in aqueous solutions.

摘要

刺激响应组装变形是构建智能软材料的关键特征,这使得它们具有多功能性和自适应性。在本研究中,设计并合成了含有螺吡喃(SP)基团的棒状-线团两亲化合物,以研究其在含水量为 99%的溶液体系中的刺激响应组装。除了光致变色现象外,这些分子聚集体还发生了可逆的光介导形态变化。基于棒状-线团两亲物的不同柔性链段,初始组装体在紫外(UV)照射下经历了解离-再组装过程,从而导致它们变形或解体为组装体。此外,随着 UV 光源的移除,原始纳米结构通过环闭反应过程逐渐恢复。有趣的是,这些化合物可以选择性地与铜离子结合,生成交联共组装纳米结构。棒状-线团两亲性化合物的铜离子配合物溶液发出独特的亮蓝色荧光,使得可以在水溶液中特异性地可视化识别铜离子。

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