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Textile-Based Triboelectric Nanogenerators for Wearable Self-Powered Microsystems

机译:可穿戴自动微型系统的纺织品摩擦纳米电磁炉

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摘要

In recent years, wearable electronic devices have made considerable progress thanks to the rapid development of the Internet of Things. However, even though some of them have preliminarily achieved miniaturization and wearability, the drawbacks of frequent charging and physical rigidity of conventional lithium batteries, which are currently the most commonly used power source of wearable electronic devices, have become technical bottlenecks that need to be broken through urgently. In order to address the above challenges, the technology based on triboelectric effect, i.e., triboelectric nanogenerator (TENG), is proposed to harvest energy from ambient environment and considered as one of the most promising methods to integrate with functional electronic devices to form wearable self-powered microsystems. Benefited from excellent flexibility, high output performance, no materials limitation, and a quantitative relationship between environmental stimulation inputs and corresponding electrical outputs, TENGs present great advantages in wearable energy harvesting, active sensing, and driving actuators. Furthermore, combined with the superiorities of TENGs and fabrics, textile-based TENGs (T-TENGs) possess remarkable breathability and better non-planar surface adaptability, which are more conducive to the integrated wearable electronic devices and attract considerable attention. Herein, for the purpose of advancing the development of wearable electronic devices, this article reviews the recent development in materials for the construction of T-TENGs and methods for the enhancement of electrical output performance. More importantly, this article mainly focuses on the recent representative work, in which T-TENGs-based active sensors, T-TENGs-based self-driven actuators, and T-TENGs-based self-powered microsystems are studied. In addition, this paper summarizes the critical challenges and future opportunities of T-TENG-based wearable integrated microsystems.
机译:近年来,由于事物互联网的快速发展,可穿戴电子设备取得了相当大的进步。然而,尽管它们中的一些初步实现了小型化和耐磨性,但常见的锂电池的频繁充电和物理刚性的缺点,即目前可穿戴电子设备的最常用的电源,已经成为需要破坏的技术瓶颈通过紧急。为了解决上述挑战,提出了基于摩擦效应的技术,即摩擦纳米能器(Teng)从环境环境中收获能量,并被认为是与功能电子设备集成的最有希望的方法之一,以形成可佩带的自我 - 功耗的微系统。受益于优异的灵活性,高输出性能,无材料限制,以及环境刺激投入和相应的电输出之间的定量关系,腾冲在可穿戴能量收集,主动传感和驾驶执行器中具有很大的优势。此外,与腾冲和织物的优势相结合,纺织品腾冲(T-Tengs)具有显着的透气性和更好的非平面表面适应性,这更有利于集成的可穿戴电子设备并吸引相当大的关注。这里,为了推进可穿戴电子设备的开发,本文介绍了最近用于建造T-Tengs和提高电输出性能的方法的材料的开发。更重要的是,本文主要侧重于最近的代表性工作,其中研究了T-Tengs的活性传感器,基于Tuengs的自动驱动器和基于T-Tengs的自我动力微动系。此外,本文总结了基于T-teng的可穿戴微系统的关键挑战和未来机遇。

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