Li Jiaodi, Dang Tianrui, Lou Ying, Cui Weiqi, Hu Jiaxi, Li Mengfan, Wang Qiuxiang, Wan Lingyu, Yu Aifang, Zhai Junyi
Center on Nanoenergy Research, School of Physical Science and Technology, Guangxi University, Nanning 530004, China.
School of Mechanical Engineering, Guangxi University, Nanning 530004, China.
ACS Appl Mater Interfaces. 2024 Aug 28;16(34):44780-44790. doi: 10.1021/acsami.4c08092. Epub 2024 Aug 15.
The state-of-the-art triboelectric nanogenerator (TENG) technology has numerous advantages and creates new prospects for the rapid development of the Internet of Things (IoT) in marine environments. Here, to accelerate the application process of TENG, an elaborately designed multilayered sleeve-structured hybrid nanogenerator (M-HNG) is developed to efficiently and persistently harvest marine energy. The M-HNG integrates an electromagnetic nanogenerator (EMG) with four coils and a multilayered sleeve-structured TENG (MS-TENG) with three freestanding layer units to increase spatial utilization efficiency. Moreover, rabbit fur strips are introduced to enhance the output performance and strengthen the durability of TENG. Therefore, the MS-TENG has high durability due to its soft-contact structure, maintaining its performance even after 240,000 cycles. When a 1000 μF capacitor is charged by M-HNG utilizing a power management circuit (PMC), the stored energy is increased from 2.62 mJ to 140.11 mJ, representing a significant improvement of 52-fold. The M-HNG triggered by water waves has successfully powered various small electronic devices, including 1200 LED lights, nine thermo-hygrometers, a water quality testing pen, and water level alarms. The proposed M-HNG effectively harvests low-frequency water wave energy, introducing an innovative concept for constructing a hybrid TENG with enhanced density and durability.
最先进的摩擦纳米发电机(TENG)技术具有众多优势,为海洋环境中物联网(IoT)的快速发展创造了新的前景。在此,为了加速TENG的应用进程,开发了一种精心设计的多层套筒结构混合纳米发电机(M-HNG),以高效且持续地收集海洋能量。M-HNG将一个带有四个线圈的电磁纳米发电机(EMG)与一个带有三个独立层单元的多层套筒结构TENG(MS-TENG)集成在一起,以提高空间利用效率。此外,引入兔毛条以提高输出性能并增强TENG的耐久性。因此,MS-TENG因其软接触结构而具有高耐久性,即使在240,000次循环后仍能保持其性能。当使用电源管理电路(PMC)通过M-HNG对一个1000 μF的电容器充电时,存储的能量从2.62 mJ增加到140.11 mJ,显著提高了52倍。由水波触发的M-HNG已成功为各种小型电子设备供电,包括1200个LED灯、九个温湿度计、一支水质检测笔和水位报警器。所提出的M-HNG有效地收集低频水波能量,为构建具有更高密度和耐久性的混合TENG引入了创新概念。