State Key Laboratory of Optoelectronic Materials and Technologies and the Guangdong Province Key Laboratory of Display Material and Technology, School of Electronics and Information Technology, Sun Yat-sen University, Guangzhou 510275, China.
Ministry of Education Key Laboratory of Micro and Nano Systems for Aerospace, Northwestern Polytechnical University, Xi'an 710072, China.
Mater Horiz. 2022 Jul 4;9(7):1935-1946. doi: 10.1039/d2mh00281g.
The traditional human-machine interaction mode of communicating solely with pressure sensors needs modification, especially at a time when COVID-19 is circulating globally. Here, a transparent, stretchable, resilient, and high-performance hydrogel fiber-based bimodal sensor is fabricated by using a polyacrylamide-alginate double network hydrogel, which features high sensitivity (3.17% cm), wide working range (18 cm), fast response/recovery speeds (90/90 ms) and good stability in proximity sensing, and impressive pressure sensing performance, including high sensitivity (0.91 kPa), short response/recovery time (40/40 ms), low detection limit (63 Pa) and good linearity. Moreover, the response switch between proximity/pressure modes is measured and non-interfering dual-mode detection is achieved. Notably, the stretchable bimodal sensor is capable of working under 100% tensile strain without degrading the sensing performance. Specifically, the proximity sensor shows good immunity to the strain, while the pressure sensitivity is even promoted. Furthermore, the sensor is tough enough to work normally after punctures from a knife and strikes from a wrench. Notably, the sensor can be used for gesture recognition and subtle pressure detection, such as small water droplets (10 mg), wrist pulse, A 3 × 3 array is further shown for accurate spatial sensing and location identification, verifying the feasibility of its practical application.
传统的仅通过压力传感器进行人机交互的模式需要改进,尤其是在全球 COVID-19 流行的情况下。在这里,通过使用聚丙烯酰胺-海藻酸钠双网络水凝胶,制备了一种透明、可拉伸、有弹性且高性能的水凝胶纤维基双模传感器,该传感器具有高灵敏度(3.17% cm)、宽工作范围(18 cm)、快速响应/恢复速度(90/90 ms)和良好的接近感应稳定性,以及令人印象深刻的压力感应性能,包括高灵敏度(0.91 kPa)、短响应/恢复时间(40/40 ms)、低检测限(63 Pa)和良好的线性度。此外,还测量了接近/压力模式之间的响应切换,实现了非干扰的双模检测。值得注意的是,这种可拉伸的双模传感器能够在 100%的拉伸应变下工作而不会降低传感性能。具体来说,接近传感器对应变具有良好的抗干扰能力,而压力灵敏度甚至得到了提升。此外,该传感器足够坚韧,可以在刀刺和扳手打击后正常工作。值得注意的是,该传感器可用于手势识别和细微压力检测,例如小水滴(10 mg)、手腕脉搏、进一步展示了一个 3×3 阵列,用于精确的空间感应和位置识别,验证了其实际应用的可行性。