A Recyclable Ionogel with High Mechanical Robustness Based on Covalent Adaptable Networks

材料科学 共价键 稳健性(进化) 纳米技术 有机化学 生物化学 基因 化学
作者
Xiaotong Fan,Yifei Luo,Ke Li,Yi-Chun Wong,Cong Wang,Jayven Chee Chuan Yeo,Gaoliang Yang,Jiaofu Li,Xian Jun Loh,Yupeng Liu,Xiaohong Chen
出处
期刊:Advanced Materials [Wiley]
标识
DOI:10.1002/adma.202407398
摘要

Abstract Ionogels are an emerging class of soft materials for flexible electronics, with high ionic conductivity, low volatility, and mechanical stretchability. Recyclable ionogels are recently developed to address the sustainability crisis of current electronics, through the introduction of non‐covalent bonds. However, this strategy sacrifices mechanical robustness and chemical stability, severely diminishing the potential for practical application. Here, covalent adaptable networks (CANs) are incorporated into ionogels, where dynamic covalent crosslinks endow high strength (11.3 MPa tensile strength), stretchability (2396% elongation at break), elasticity (energy loss coefficient of 0.055 at 100% strain), and durability (5000 cycles of 150% strain). The reversible nature of CANs allows the ionogel to be closed‐loop recyclable for up to ten times. Additionally, the ionogel is toughened by physical crosslinks between conducting ions and polymer networks, breaking the common dilemma in enhancing mechanical properties and electrical conductivity. The ionogel demonstrates robust strain sensing performance under harsh mechanical treatments and is applied for reconfigurable multimodal sensing based on its recyclability. This study provides insights into improving the mechanical and electrical properties of ionogels toward functionally reliable and environmentally sustainable bioelectronics.
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