Department of Health and Physical Education, Jianghan University, Wuhan 430056, China.
Beijing Institute of Nanoenergy and Nanosystems, Chinese Academy of Sciences, Beijing 101400, China.
Biosensors (Basel). 2023 Feb 7;13(2):236. doi: 10.3390/bios13020236.
Human physiological signals have an important role in the guidance of human health or exercise training and can usually be divided into physical signals (electrical signals, blood pressure, temperature, etc.) and chemical signals (saliva, blood, tears, sweat). With the development and upgrading of biosensors, many sensors for monitoring human signals have appeared. These sensors are characterized by softness and stretching and are self-powered. This article summarizes the progress in self-powered biosensors in the past five years. Most of these biosensors are used as nanogenerators and biofuel batteries to obtain energy. A nanogenerator is a kind of generator that collects energy at the nanoscale. Due to its characteristics, it is very suitable for bioenergy harvesting and sensing of the human body. With the development of biological sensing devices, the combination of nanogenerators and classical sensors so that they can more accurately monitor the physiological state of the human body and provide energy for biosensor devices has played a great role in long-range medical care and sports health. A biofuel cell has a small volume and good biocompatibility. It is a device in which electrochemical reactions convert chemical energy into electrical energy and is mostly used for monitoring chemical signals. This review analyzes different classifications of human signals and different forms of biosensors (implanted and wearable) and summarizes the sources of self-powered biosensor devices. Self-powered biosensor devices based on nanogenerators and biofuel cells are also summarized and presented. Finally, some representative applications of self-powered biosensors based on nanogenerators are introduced.
人体生理信号在指导人体健康或运动训练方面具有重要作用,通常可分为物理信号(电信号、血压、体温等)和化学信号(唾液、血液、眼泪、汗液等)。随着生物传感器的发展和升级,出现了许多用于监测人体信号的传感器。这些传感器具有柔软和拉伸的特点,并且自供电。本文总结了过去五年自供电生物传感器的进展。这些生物传感器大多用作纳米发电机和生物燃料电池来获取能量。纳米发电机是一种在纳米尺度上收集能量的发电机。由于其特性,非常适合生物能量收集和人体感应。随着生物传感装置的发展,纳米发电机与经典传感器的结合使它们能够更准确地监测人体的生理状态,并为生物传感器装置提供能量,在远程医疗和运动健康方面发挥了重要作用。生物燃料电池体积小,生物相容性好,是一种将电化学能转化为电能的装置,主要用于监测化学信号。本文分析了不同形式的人体信号和不同形式的生物传感器(植入式和可穿戴式),总结了自供电生物传感器装置的能量来源。还总结并介绍了基于纳米发电机和生物燃料电池的自供电生物传感器装置。最后,介绍了基于纳米发电机的自供电生物传感器的一些有代表性的应用。