Wang Chan, Shi Qiongfeng, Lee Chengkuo
Department of Electrical and Computer Engineering, National University of Singapore, 4 Engineering Drive 3, Singapore 117576, Singapore.
Center for Intelligent Sensors and MEMS, National University of Singapore, 5 Engineering Drive 1, Singapore 117608, Singapore.
Nanomaterials (Basel). 2022 Apr 15;12(8):1366. doi: 10.3390/nano12081366.
Implantable biomedical devices (IMDs) play essential roles in healthcare. Subject to the limited battery life, IMDs cannot achieve long-term in situ monitoring, diagnosis, and treatment. The proposal and rapid development of triboelectric nanogenerators free IMDs from the shackles of batteries and spawn a self-powered healthcare system. This review aims to overview the development of IMDs based on triboelectric nanogenerators, divided into self-powered biosensors, in vivo energy harvesting devices, and direct electrical stimulation therapy devices. Meanwhile, future challenges and opportunities are discussed according to the development requirements of current-level self-powered IMDs to enhance output performance, develop advanced triboelectric nanogenerators with multifunctional materials, and self-driven close-looped diagnosis and treatment systems.
可植入生物医学设备(IMD)在医疗保健中发挥着重要作用。由于电池寿命有限,IMD无法实现长期的原位监测、诊断和治疗。摩擦纳米发电机的出现和快速发展使IMD摆脱了电池的束缚,并催生了自供电医疗系统。本综述旨在概述基于摩擦纳米发电机的IMD的发展,分为自供电生物传感器、体内能量收集装置和直接电刺激治疗装置。同时,根据当前水平的自供电IMD的发展要求,讨论了未来的挑战和机遇,以提高输出性能、开发具有多功能材料的先进摩擦纳米发电机以及自驱动闭环诊断和治疗系统。