School of Physics and Optoelectronic Engineering & Guangdong Provincial Key Laboratory of Sensing Physics and System Integration Applications, Guangdong University of Technology, Guangzhou, 510006, China.
Small. 2024 Nov;20(46):e2405520. doi: 10.1002/smll.202405520. Epub 2024 Aug 11.
Over the past decades, tactile sensing technology has made significant advances in the fields of health monitoring and robotics. Compared to conventional sensors, self-powered tactile sensors do not require an external power source to drive, which makes the entire system more flexible and lightweight. Therefore, they are excellent candidates for mimicking the tactile perception functions for wearable health monitoring and ideal electronic skin (e-skin) for intelligent robots. Herein, the working principles, materials, and device fabrication strategies of various self-powered tactile sensing platforms are introduced first. Then their applications in health monitoring and robotics are presented. Finally, the future prospects of self-powered tactile sensing systems are discussed.
在过去几十年中,触觉传感技术在健康监测和机器人领域取得了重大进展。与传统传感器相比,自供电触觉传感器不需要外部电源来驱动,这使得整个系统更加灵活和轻便。因此,它们是模仿可穿戴健康监测的触觉感知功能以及智能机器人理想电子皮肤 (e-skin) 的绝佳候选者。本文首先介绍了各种自供电触觉传感平台的工作原理、材料和器件制造策略。然后介绍了它们在健康监测和机器人技术中的应用。最后,讨论了自供电触觉传感系统的未来前景。