墨水池
材料科学
透明度(行为)
自愈
纳米技术
可穿戴计算机
可穿戴技术
电容感应
弹性体
光电子学
计算机科学
电气工程
复合材料
工程类
嵌入式系统
医学
替代医学
计算机安全
病理
作者
Zhenglin Chen,Fang Li,Likun Zhang,Zhengyang Lei,Canhui Yang,Chufan Xiao,Lijin Lian,Xi Yuan,Gul Ijaz,Jia'e Yang,Zi-Jun Lin,Yunfeng He,Ping Zhang,Dongmei Yu,Peiwu Qin
标识
DOI:10.1016/j.cej.2022.138672
摘要
• A new type of liquid-free ICE is synthesized as self-healing ionic conductor. • ICE is highly stretchable, transparent, thermally stable, and self-healable. • A temperature tolerant all-solid-state touch panel is developed based on ICE. Stretchable and transparent soft ionic conductors have shown great promise in the development of next-generation touch panels. However, hydrogel/organogel-based devices suffer from instability due to liquid leakage or evaporation. Solvent-free ionic elastomers (ICEs) with high transparency (average light transmission of 93%), intrinsic conductivity (ionic conductivity of 8.8 × 10 –3 S m -1 ), and stretchability at room temperature (strain up to 997%) are demonstrated in this study. These ICEs are self-healable over a wide range of operating temperatures (–20 to 60 ℃) in the absence of external stimulus while maintaining a highly transparent appearance. They are available as an all-solid-state human-machine interactive touch panel with self-healing ability. A surface capacitive touch system is used to sense the location touched by a finger, demonstrating its ability to sense the finger position over a broad temperature range. The functionality of the wearable touch panel is demonstrated by writing text, playing piano, playing electronic games, and controlling the movement of a toy car.
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