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多层螺旋球形摩擦纳米发电机的电荷穿梭用于水波能量收集。

Multilayered Helical Spherical Triboelectric Nanogenerator with Charge Shuttling for Water Wave Energy Harvesting.

机构信息

CAS Center for Excellence in Nanoscience, Beijing Key Laboratory of Micro-Nano Energy and Sensor, Beijing Institute of Nanoenergy and Nanosystems, Chinese Academy of Sciences, Beijing, 101400, P. R. China.

School of Nanoscience and Technology, University of Chinese Academy of Sciences, Beijing, 100049, P. R. China.

出版信息

Small Methods. 2023 Mar;7(3):e2201392. doi: 10.1002/smtd.202201392. Epub 2023 Jan 29.

Abstract

As an important part of natural resources, islands support the marine economy and build a blue barrier for marine ecological civilization. However, the power supply on these islands is difficult, limiting the development of marine internet of things (IoTs). In order to break the status quo, this work applies triboelectric nanogenerators (TENGs) to island power supply and ecological monitoring. A spherical TENG with two multilayered helical units is designed to harvest water wave energy, in which the space utilization rate reaches 92.5%. Then a charge shuttling mechanism is developed to improve the electrical output. The output current and power of a single TENG without power management reach 200.3 µA and 16.2 mW respectively, corresponding to a peak power density of 23.2 W m . Moreover, a scheme of the power managed TENG is proposed for realizing large-scale wave energy harvesting. The TENG is demonstrated to successfully power a water quality detector, a Bluetooth thermo-hygrometer, and an intelligent wireless alarm system for remote environmental monitoring. This work not only proposes a new type of TENG for water wave energy harvesting with improved performance, but also provides a new strategy for intelligent ocean IoTs, which even contributes to the carbon neutralization.

摘要

作为自然资源的重要组成部分,岛屿为海洋经济提供支撑,并为海洋生态文明构建蓝色屏障。然而,这些岛屿的电力供应困难,限制了海洋物联网(IoT)的发展。为了打破这种现状,本工作将摩擦纳米发电机(TENG)应用于岛屿供电和生态监测。设计了一种具有两个多层螺旋单元的球形 TENG 以收集水波能量,其中空间利用率达到 92.5%。然后开发了一种电荷穿梭机制来提高电输出。单个 TENG 在没有电源管理的情况下的输出电流和功率分别达到 200.3 µA 和 16.2 mW,相应的峰值功率密度为 23.2 W m。此外,还提出了一种基于管理 TENG 的方案,用于实现大规模的波能收集。该 TENG 成功为水质探测器、蓝牙温湿度计和用于远程环境监测的智能无线报警系统供电。这项工作不仅提出了一种具有改进性能的新型 TENG 用于水波能量收集,还为智能海洋 IoT 提供了一种新策略,甚至有助于实现碳中和。

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