Macário David, Domingos Ismael, Carvalho Nuno, Pinho Pedro, Alves Helena
Electronic, Telecomunications and Informatics Department, University of Aveiro, Portugal.
IT, Instituto de Telecomunicações, Aveiro, Portugal.
iScience. 2022 Feb 26;25(4):103977. doi: 10.1016/j.isci.2022.103977. eCollection 2022 Apr 15.
Internet of Things (IoT) and recently Internet of Nano Things (IoNT) bear the promise of new devices able to communicate and assist our daily lives toward wearable technologies which demand a versatile integration such as in wireless body networks (WBN), sensing, and health monitorization. These must comply with stringent constraints on energy usage. Dimensions and complexity intensify the need for small and maintenance-free power sources. Environment energy harvesting and storage is an important approach to sustain operation for a long time. Triboelectric nanogenerators (TENGs) arise as a strong and promising solution to power the new field of outcoming self-sustainable devices, implantable, and wearable devices. They can transform mechanical energy in different modes, have simple structures, and use vulgar and sustainable materials. This paper makes a review about TENGs technology, construction, materials, operation, and focus on strategies for harvesting circuits. Main challenges like efficiency, reliability, energy storage, and sustainability are discussed.
物联网(IoT)以及最近出现的纳米物联网(IoNT)有望带来新型设备,这些设备能够进行通信并助力我们的日常生活迈向可穿戴技术,而可穿戴技术需要诸如无线人体网络(WBN)、传感和健康监测等多功能集成。这些设备必须符合对能源使用的严格限制。尺寸和复杂性加剧了对小型且无需维护的电源的需求。环境能量收集与存储是实现长期持续运行的重要途径。摩擦纳米发电机(TENGs)作为一种强大且有前景的解决方案应运而生,可为即将出现的自维持设备、可植入设备和可穿戴设备等新领域供电。它们可以在不同模式下转换机械能,结构简单,且使用常见且可持续的材料。本文对TENGs技术、结构、材料、运行进行了综述,并重点关注了收集电路的策略。讨论了诸如效率、可靠性、能量存储和可持续性等主要挑战。