A Highly Stretchable, Ultrastable, and Antifatigue Ionic Organogel as an Environment-Tolerant Flexible Sensor and Sensitive Capacitive Pen

电容感应 材料科学 纳米技术 离子键合 离子液体 光电子学 计算机科学 化学 离子 操作系统 有机化学 催化作用
作者
Zhengxu Jin,Hongyan Liu,Debin Wang,Mengju Yuan,Huijuan Zhang
出处
期刊:ACS applied polymer materials [American Chemical Society]
卷期号:6 (18): 11080-11091 被引量:11
标识
DOI:10.1021/acsapm.4c00966
摘要

High-performance flexible sensors require excellent temperature and fatigue resistance without a significant sacrifice of high sensitivity. In this study, an environmentally resistant ionic organogel was fabricated via a two-step approach. An ultrastable binary solvent system was first synthesized using ethylene glycol and halogenated metal ionic liquid. Then, a loosely chemically cross-linked poly(acrylic acid) was incorporated as a backbone in the binary solvent, in which graphene oxide and halogenated metal ionic liquids synergistically formed an efficient conductive network. The distinct binary solvent and ample interactions endowed the gel with remarkable stretchability (elongation at break of 1105%), superior fatigue resistance (mechanical loss of only 4.05% after 500 compression cycles), and stable mechanical properties over a wide temperature range (from −80 to 150 °C). Additionally, its mechanical properties could be preserved to a great extent after 15 days of exposure to an open environment. Due to its outstanding conductivity and sensing capabilities, the gel is also suitable for transmitting Morse code signals or being integrated into capacitive pens for seamless digital screen interaction. This multifunctional ionic organogel holds great promise for applications in electronic skin, motion monitoring, and human machine interaction (HMI) in extreme environments.
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