聚丙烯酸
丙烯酰胺
化学
自愈水凝胶
化学工程
X射线光电子能谱
高分子化学
儿茶酚
聚乙烯醇
丙烯酸
催化作用
纳米技术
材料科学
聚合物
有机化学
单体
工程类
共聚物
作者
Yu Jiang,Yixiang Chen,Wanqi Feng,Xin Zhong,Dan Yu,Sheng Wang
标识
DOI:10.1016/j.cej.2024.149460
摘要
Tissue-like hydrogels with adjustable functionality have garnered significant attention in the medical, engineering, and flexible electronics fields. However, the preparation of hydrogels is often time-sconsuming and requires additional energy input. In this study, catechol-functionalized acrylamide (dopamine acrylamide, DAM) is firstly used in conjunction with Fe3+ to constitute a simple, efficient, universal and environmental tolerance catalytic system. The catalytic mechanism is thoroughly investigated through ultraviolet–visible-near infrared (UV–Vis-NIR) spectroscopy, X-ray photoelectron spectroscopy (XPS), electron spin-resonance (ESR) spectra, and density functional theory (DFT) calculations. The p(acrylic acid-dopamine acrylamide)/Fe3+/polyvinyl alcohol/SiO2 (PFPS) hydrogel is rapidly prepared without external energy within 20 s via DAM-Fe3+ system and exhibite outstanding stretchability (>1000 % strain), adhesion, self-healing properties. Sensitive, repeatable, and stable electrical signals with strain are detected by the PFPS hydrogel, indicating considerable potential in next-generation flexible strain sensors for exercise tracking and health management.
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