纳米发生器
能量收集
摩擦电效应
材料科学
可再生能源
电介质
补偿(心理学)
光电子学
能量转换效率
电压
发电机(电路理论)
混合动力系统
振荡(细胞信号)
能量(信号处理)
电气工程
声学
计算机科学
功率(物理)
压电
工程类
物理
机器学习
复合材料
精神分析
统计
生物
量子力学
遗传学
数学
心理学
作者
Jiyu Wang,Lun Pan,Hengyu Guo,Binbin Zhang,Rongrong Zhang,Zhiyi Wu,Changsheng Wu,Lijun Yang,Ruijin Liao,Zhong Lin Wang
标识
DOI:10.1002/aenm.201802892
摘要
Abstract Water wave energy is a promising renewable energy source that may alleviate the rising concerns over current resource depletion, but it is rarely exploited due to the lack of efficient energy harvesting technologies. In this work, a hybrid system with a triboelectric nanogenerator (TENG) and an electromagnetic generator (EMG) based on an optimized inner topological structure is reported to effectively harvest water wave energy. The TENG with etched polytetrafluoroethylene films and Cu electrodes utilizing the contact‐freestanding mode is designed into a cubic structure, in which the EMG is well hybridized. An integration of TENG and EMG achieves mutual compensation of their own merits, enabling the hybrid system to deliver satisfactory output over a broad range of operation frequency. The output performance of TENG with varied inner topological structures is experimentally and theoretically compared, and a concept is proposed to further clarify the energy conversion efficiency, which should be considered in designing energy harvesting devices. The influences of oscillation frequency, amplitude, and dielectric materials on the output performance of the hybrid system are comprehensively studied on different platforms. Furthermore, the optimum operation frequency ranges for TENG and EMG are concluded. The proposed hybrid nanogenerator renders an effective approach toward large‐scale blue energy harvesting over a broad frequency range.
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