Key Laboratory of Functional Polymer Materials of Ministry of Education and College of Chemistry, and State Key Laboratory of Medicinal Chemical Biology, Nankai University, Tianjin, China.
College of Chemistry, Chemical Engineering and Materials Science, Shandong Normal University, Jinan, China.
Mater Horiz. 2021 Nov 1;8(11):3096-3104. doi: 10.1039/d1mh01172c.
Intelligent hydrogels that simultaneously exhibit excellent toughness, self-healing ability and photoelectronic responsiveness are in high demand but are greatly challenging to prepare. Inspired by the hierarchical structure of fluorescent proteins in jellyfish and biomembranes in nature, herein, a facile and universal all-in-one strategy is demonstrated to construct fluorescent, electrically responsive and ultratough self-healing hydrogels aqueous self-assembly of polyelectrolyte-surfactant micelles with hierarchical structures and functionality. The self-assembled 2-ureido-4-[1]-pyrimidone (UPy) hydrophobic core containing reversible physical crosslinks embedded in micelles leads to a durable network structure with excellent toughness and self-healing ability. Moreover, dramatically enhanced fluorescence emission is obtained due to the formation of nanoclusters with electron-rich moieties that show restricted intramolecular motion induced by hydrogen bonding networks from UPy dimer aggregation. The micelle-incorporated sulfonic acid groups mimic the function of biological membrane proteins that deftly control the micelle size, leading to electro-responsiveness, enhanced toughness and fluorescence emission.
同时具有优异韧性、自修复能力和光电响应性能的智能水凝胶需求量很大,但制备起来极具挑战性。受水母中荧光蛋白的分级结构和自然界中生物膜的启发,本文提出了一种简便通用的方法,通过带有分级结构和功能的聚电解质-表面活性剂胶束的水溶液自组装,来构建具有荧光、电响应和超韧自修复性能的水凝胶。自组装的 2-脒基-4-[1]-嘧啶酮(UPy)疏水性核心包含可逆的物理交联键,这些交联键嵌入胶束中,形成具有优异韧性和自修复能力的持久网络结构。此外,由于形成了具有富电子部分的纳米簇,限制了分子内运动,这是由 UPy 二聚体聚集形成的氢键网络引起的,因此荧光发射得到显著增强。掺入胶束的磺酸基团模拟了生物膜蛋白的功能,可以巧妙地控制胶束的大小,从而实现对电响应性、韧性和荧光发射的增强。