State Key Laboratory of Material Processing and Die & Mould Technology, Key Laboratory of Material Chemistry for Energy Conversion and Storage Ministry of Education, School of Chemistry and Chemical Engineering, Huazhong University of Science and Technology (HUST), Wuhan, 430074, China.
Small. 2021 Oct;17(41):e2103271. doi: 10.1002/smll.202103271. Epub 2021 Sep 12.
With the ever-growing demands for flexible smart interactive electronics, it remains highly desirable yet challenging to design and fabricate interactive ionic skin with multiple signal synergistic outputs. Herein, high-performance photonic ionogels (PIGs) with excellent stability and synergy sensitivity are designed by locking a non-volatile and non-hygroscopic ionic liquid (IL), that is, 1-ethyl-3-methylimidazolium bis-(trifluoromethylsulfonyl)imide ([EMIm][TFSI]), into photonic elastomers based on polymer networks of poly(ethylene glycol) phenyl ether acrylate (PEGPEA). Through manipulating the degree of crosslinking, PIGs exhibit high sensitivity that can output distinct and intuitive color change in visual with the mechanochromic sensitivity of ≈1.76 nm per percent strain and clear electrical signal with the gauge factor of 1, in response to a tiny stretch of millimeter scale. Thanks to the stable photonic elastomers and IL employed, the PIGs developed in this study exhibit good performance under harsh and complex environmental conditions, including high/low temperature (from -35 °C to 100 °C), dry/wet air, and high vacuum. This study provides a novel strategy for developing integrated, stable, and multifunctional photonic ionogels for ionic skin sensors and flexible interactive devices with synergistically optical and electrical output.
随着对灵活的智能交互式电子产品的需求不断增长,设计和制造具有多种信号协同输出的交互式离子皮肤仍然极具挑战性。本文通过将一种非挥发性和非吸湿性离子液体(即 1-乙基-3-甲基咪唑双(三氟甲烷磺酰基)亚胺([EMIm][TFSI])锁定到基于聚乙二醇苯基醚丙烯酸酯(PEGPEA)的聚合物网络的光子弹性体中,设计出具有优异稳定性和协同灵敏度的高性能光子离子凝胶(PIG)。通过控制交联度,PIG 表现出高灵敏度,在视觉上可以输出明显和直观的颜色变化,机械变色灵敏度约为每百分应变 1.76nm,并且可以清晰地输出电信号,应变系数为 1,可响应毫米级的微小拉伸。由于所使用的稳定光子弹性体和 IL,本研究中开发的 PIG 在恶劣和复杂的环境条件下表现出良好的性能,包括高低温(-35°C 至 100°C)、干燥/潮湿空气和高真空。本研究为开发用于离子皮肤传感器和具有协同光学和电学输出的灵活交互式设备的集成、稳定和多功能光子离子凝胶提供了一种新策略。