聚合
儿茶酚
木质素
单体
自愈水凝胶
化学工程
化学
材料科学
固化(化学)
高分子化学
动态力学分析
木聚糖
聚合物
有机化学
水解
工程类
作者
Nan Li,Dan Sun,Zhenhua Su,Xiang Hao,Ming‐Fei Li,Junli Ren,Feng Peng
标识
DOI:10.1016/j.carbpol.2021.118306
摘要
Traditional preparation methods of the hydrogel are not only tedious but also requiring external stimuli. Here, a plant catechol-inspired self-catalytic system (sulfonated lignin and iron ion) has been introduced to rapidly trigger the graft polymerization of vinyl monomers on the carboxymethyl xylan (CMX) at room temperature, generating an elastic, UV-shield, and conductive hydrogel. The rapid preparation process can be finished at room temperature in 5 min without the removal of oxygen. The hydrogel shows charming extension ratio (up to 460%) and tensile stress (up to 23 kPa), which can be ascribed to the double network structure constructed from Fe3+ and CMX. The hydrogel exhibits great transparency (up to 85.37%), fascinating UV-blocking (up to 99%), and conductive features, thereby serving as potential human body sensors. The rapid preparation of xylan-derived hydrogels via dynamic lignin catechol chemistry may open up a new approach to high-valued utilization of biomass.
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