自愈水凝胶
超分子化学
扩散
纳米颗粒
纳米技术
丙烯酸
材料科学
化学工程
化学
聚合物
高分子化学
分子
有机化学
复合材料
物理
单体
工程类
热力学
作者
Hucheng Wang,Xiaoming Fu,Guanyao Gu,Shengyu Bai,Runlai Li,Weimin Zhong,Xuhong Guo,Rienk Eelkema,Jan H. van Esch,Zhixing Cao,Yiming Wang
标识
DOI:10.1002/anie.202310162
摘要
Living organisms are capable of dynamically changing their structures for adaptive functions through sophisticated reaction-diffusion processes. Here we show how active supramolecular hydrogels with programmable lifetimes and macroscopic structures can be created by relying on a simple reaction-diffusion strategy. Two hydrogel precursors (poly(acrylic acid) PAA/CaCl2 and Na2 CO3 ) diffuse from different locations and generate amorphous calcium carbonate (ACC) nanoparticles at the diffusional fronts, leading to the formation of hydrogel structures driven by electrostatic interactions between PAA and ACC nanoparticles. Interestingly, the formed hydrogels are capable of autonomously disintegrating over time because of a delayed influx of electrostatic-interaction inhibitors (NaCl). The hydrogel growth process is well explained by a reaction-diffusion model which offers a theoretical means to program the dynamic growth of structured hydrogels. Furthermore, we demonstrate a conceptual access to dynamic information storage in soft materials using the developed reaction-diffusion strategy. This work may serve as a starting point for the development of life-like materials with adaptive structures and functionalities.
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