Jiang Min, Lu Yi, Zhu Zhiyuan, Jia Wenzhu
Faculty of Mathematics and Information Science, Southwest University, Chongqing 400700, China.
School of Optoelectronic Engineering, Chongqing University of Posts and Telecommunications, Chongqing 400065, China.
Micromachines (Basel). 2021 Jun 15;12(6):698. doi: 10.3390/mi12060698.
With the rapid progress of artificial intelligence, humans are moving toward the era of the intelligent connection of all things. Therefore, the demand for sensors is drastically increasing with developing intelligent social applications. Traditional sensors must be triggered by an external power source and the energy consumption is high for equipment that is widely distributed and working intermittently, which is not conducive to developing sustainable green and healthy applications. However, self-powered sensors based on triboelectric nanogenerators (TENG) can autonomously harvest energy from the surrounding environment and convert this energy into electrical energy for storage. Sensors can also be self-powered without an external power supply, which is vital for smart cities, smart homes, smart transportation, environmental monitoring, wearable devices, and bio-medicine. This review mainly summarizes the working mechanism of TENG and the research progress of self-powered sensors based on TENG about the Internet of Things (IoT), robotics, human-computer interaction, and intelligent medical fields in recent years.
随着人工智能的飞速发展,人类正迈向万物智能互联的时代。因此,随着智能社会应用的不断发展,对传感器的需求急剧增加。传统传感器必须由外部电源触发,对于广泛分布且间歇性工作的设备来说,能耗很高,这不利于可持续绿色健康应用的发展。然而,基于摩擦电纳米发电机(TENG)的自供电传感器可以从周围环境中自主收集能量,并将这种能量转化为电能进行存储。传感器无需外部电源也能实现自供电,这对于智慧城市、智能家居、智能交通、环境监测、可穿戴设备和生物医学至关重要。本文综述主要总结了TENG的工作机制以及近年来基于TENG的自供电传感器在物联网(IoT)、机器人技术、人机交互和智能医疗领域的研究进展。