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Nanogenerator-Based Self-Powered Sensors for Wearable and Implantable Electronics

机译:用于穿戴式和植入式电子产品的基于纳米发电机的自供电传感器

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摘要

Wearable and implantable electronics (WIEs) are more and more important and attractive to the public, and they have had positive influences on all aspects of our lives. As a bridge between wearable electronics and their surrounding environment and users, sensors are core components of WIEs and determine the implementation of their many functions. Although the existing sensor technology has evolved to a very advanced level with the rapid progress of advanced materials and nanotechnology, most of them still need external power supply, like batteries, which could cause problems that are difficult to track, recycle, and miniaturize, as well as possible environmental pollution and health hazards. In the past decades, based upon piezoelectric, pyroelectric, and triboelectric effect, various kinds of nanogenerators (NGs) were proposed which are capable of responding to a variety of mechanical movements, such as breeze, body drive, muscle stretch, sound/ultrasound, noise, mechanical vibration, and blood flow, and they had been widely used as self-powered sensors and micro-nanoenergy and blue energy harvesters. This review focuses on the applications of self-powered generators as implantable and wearable sensors in health monitoring, biosensor, human-computer interaction, and other fields. The existing problems and future prospects are also discussed.
机译:可穿戴和植入式电子产品(WIE)越来越重要,并且对公众具有吸引力,它们对我们生活的各个方面都产生了积极影响。作为可穿戴电子设备与其周围环境和用户之间的桥梁,传感器是WIE的核心组件,并决定其许多功能的实现。尽管随着先进材料和纳米技术的飞速发展,现有的传感器技术已经发展到非常先进的水平,但是它们中的大多数仍需要外部电源,例如电池,这可能会导致难以跟踪,回收和小型化的问题,因为以及可能的环境污染和健康危害。在过去的几十年中,基于压电,热电和摩擦电效应,人们提出了各种纳米发电机(NGs),它们能够响应各种机械运动,例如微风,身体运动,肌肉伸展,声音/超声,噪声,机械振动和血液流动,它们已被广泛用作自供电传感器,微纳米能量和蓝色能量收集器。本文将重点介绍自供电发电机作为可植入和可穿戴式传感器在健康监测,生物传感器,人机交互以及其他领域的应用。还讨论了存在的问题和未来前景。

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