Xu Youqun, Chen Liangren, Chen Jianwen, Chang Xiaohua, Zhu Yutian
College of Material, Chemistry and Chemical Engineering, Key Laboratory of Organosilicon Chemistry and Material Technology, Ministry of Education, Hangzhou Normal University, Hangzhou 311121, Zhejiang, People's Republic of China.
ACS Appl Mater Interfaces. 2022 Jan 12;14(1):2122-2131. doi: 10.1021/acsami.1c22428. Epub 2021 Dec 31.
Bioinspired by the interlocked geometry between the epidermal-dermal layers of natural skin, here we design a flexible and transparent (94.2%) skin-like sensor with an interlocked hexagonal microcolumn array structure based on ionogels of ionic liquids (ILs) and thermoplastic polyurethane (TPU) assisted by laser-etched silicon wafers. Attributed to the bioinspired microstructure, the resulting interlocked TPU@IL ionogel sensor exhibits outstanding pressure-sensing properties, which has an ultralow detection limit (∼10 Pa) and ultrafast responsiveness (∼24 ms). Interestingly, it is worth noting that the interlocked TPU@IL ionogel sensor also has high temperature-sensing performance because of the dependence of the ionic conductivity of ILs on the temperature, which can accurately detect a slight temperature change (0.1 °C). Moreover, the interlocked TPU@IL ionogel sensor can also serve as the strain sensor in the strain range of 0.1-10%. Attributed to the intrinsically antibacterial effect of ILs, the interlocked TPU@IL ionogel sensor possesses an antibacterial function, which is a desired merit of wearable electronics and devices. The current study provides a novel strategy to manufacture transparent, flexible, and antimicrobial e-skin sensors with multiple sensing capabilities, which may inspire more future research studies for e-skins.
受天然皮肤表皮-真皮层之间互锁几何结构的启发,我们在此设计了一种柔性透明(94.2%)的类皮肤传感器,它具有基于离子液体(ILs)和热塑性聚氨酯(TPU)的互锁六边形微柱阵列结构,并借助激光蚀刻硅片制成。得益于这种受生物启发的微观结构,所得的互锁TPU@IL离子凝胶传感器展现出卓越的压力传感性能,具有超低检测限(约10 Pa)和超快响应速度(约24 ms)。有趣的是,值得注意的是,互锁TPU@IL离子凝胶传感器由于ILs的离子电导率对温度的依赖性,还具有高温传感性能,能够精确检测微小的温度变化(0.1 °C)。此外,互锁TPU@IL离子凝胶传感器在0.1 - 10%的应变范围内也可作为应变传感器。由于ILs固有的抗菌作用,互锁TPU@IL离子凝胶传感器具有抗菌功能,这是可穿戴电子产品和设备所期望具备的优点。当前的研究提供了一种制造具有多种传感能力的透明、柔性和抗菌电子皮肤传感器的新策略,这可能会激发未来更多关于电子皮肤的研究。