Zhao Zequan, Lu Yin, Mi Yajun, Meng Jiajing, Cao Xia, Wang Ning
Center for Green Innovation, School of Mathematics and Physics, University of Science and Technology Beijing, Beijing 100083, China.
Beijing Institute of Nanoenergy and Nanosystems, Chinese Academy of Sciences, Beijing 100083, China.
Micromachines (Basel). 2022 Sep 23;13(10):1586. doi: 10.3390/mi13101586.
There is an increasing need for structural flexibility in self-powered wearable electronics and other Internet of Things (IoT), where adaptable triboelectric nanogenerators (TENGs) play a key role in realizing the true potential of IoT by endowing the latter with self-sustainability. Thus, in this review, the topic was restricted to the adaptive design of TENGs with structural flexibility that aims to promote the sustainable operation of various smart electronics. This review begins with an emphatical discussion of the concept of flexible electronics and TENGs, and continues with the introduction of TENG-based self-powered intelligent systems while placing the emphasis on self-powered flexible intelligent devices. Self-powered healthcare sensors, e-skins, and other intelligent wearable electronics with enhanced intelligence and efficiency in practical applications due to the integration with TENGs are illustrated, along with an emphasis on the design strategy of structural flexibility of TENGs and the associated integration schemes. This review aims to cover recent achievements in the field of self-powered systems, and provides information on how flexibility or adaptability in TENGs can be adopted, their types, and why they are required in promoting advanced IoT applications with sustainability and intelligence algorithms.
在自供电可穿戴电子设备和其他物联网(IoT)中,对结构灵活性的需求日益增加,其中适应性摩擦纳米发电机(TENG)通过赋予物联网自我可持续性,在实现物联网的真正潜力方面发挥着关键作用。因此,在本综述中,主题局限于具有结构灵活性的TENG的自适应设计,旨在促进各种智能电子产品的可持续运行。本综述首先着重讨论了柔性电子和TENG的概念,接着介绍了基于TENG的自供电智能系统,同时重点关注自供电柔性智能设备。阐述了由于与TENG集成而在实际应用中具有更高智能和效率的自供电医疗传感器、电子皮肤及其他智能可穿戴电子产品,同时强调了TENG的结构灵活性设计策略及相关集成方案。本综述旨在涵盖自供电系统领域的最新成果,并提供有关如何采用TENG的灵活性或适应性、其类型以及为何在促进具有可持续性和智能算法的先进物联网应用中需要它们的信息。