制作
材料科学
纳米技术
可穿戴计算机
化学
可穿戴技术
计算机科学
光电子学
工程类
过程(计算)
作者
Qing Zhao,Jiaxuan Zhu,Sanwei Hao,Jun Yang,Jifei Zhang,Jialong Wen,Wenfeng Ren,Bing Wang,Ling-Ping Xiao,Changyou Shao,Runcang Sun
出处
期刊:Biomacromolecules
[American Chemical Society]
日期:2026-03-05
卷期号:27 (4): 2807-2817
被引量:1
标识
DOI:10.1021/acs.biomac.5c02651
摘要
Ionogels, as soft ionic conductors, face synthesis challenges including toxicity, complexity, and high energy consumption. Herein, we present a green one-pot strategy that effectively dissolves cellulose and undergoes sunlight-induced photopolymerization to form ionogels without the need for cross-linkers or initiators. 1-Butyl-3-methylimidazolium chloride ([BMIM]Cl), as the solvent, enables the disruption of the extensive hydrogen-bond network of cellulose, resulting in rapid and complete dissolution. Subsequent one-step photopolymerization, which proceeds solely under sunlight, simultaneously drives in situ cross-linking and a controlled phase separation process, yielding high-performance ionogels. Importantly, the resulting cellulose ionogel exhibits superior fracture strength (2.75 MPa), high toughness (18.4 MJ m–3), and strong adhesion (6.6 MPa), ameliorating the traditional trade-off between mechanical strength and adhesion capabilities. This work develops an integrated ionogel platform as a soft TENG electrode for human motion monitoring, informing the design of sustainable self-powered electronics.
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