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通过滚动摩擦纳米发电机和电磁发电机的混合实现全封装蓝色能源采集器

Fully Packaged Blue Energy Harvester by Hybridizing a Rolling Triboelectric Nanogenerator and an Electromagnetic Generator.

机构信息

School of Materials Science and Engineering, Georgia Institute of Technology , Atlanta, Georgia 30332, United States.

Suzhou Institute of Nano-Tech and Nano-Bionics, Chinese Academy of Sciences , Suzhou 215123, China.

出版信息

ACS Nano. 2016 Dec 27;10(12):11369-11376. doi: 10.1021/acsnano.6b06622. Epub 2016 Nov 30.

Abstract

Ocean energy, in theory, is an enormous clean and renewable energy resource that can generate electric power much more than that required to power the entire globe without adding any pollution to the atmosphere. However, owing to a lack of effective technology, such blue energy is almost unexplored to meet the energy requirement of human society. In this work, a fully packaged hybrid nanogenerator consisting of a rolling triboelectric nanogenerator (R-TENG) and an electromagnetic generator (EMG) is developed to harvest water motion energy. The outstanding output performance of the R-TENG (45 cm in volume and 28.3 g in weight) in the low-frequency range (<1.8 Hz) complements the ineffective output of EMG (337 cm in volume and 311.8 g in weight) in the same range and thus enables the hybrid nanogenerator to deliver valuable outputs in a broad range of operation frequencies. Therefore, the hybrid nanogenerator can maximize the energy conversion efficiency and broaden the operating frequency simultaneously. In terms of charging capacitors, this hybrid nanogenerator provides not only high voltage and consistent charging from the TENG component but also fast charging speed from the EMG component. The practical application of the hybrid nanogenerator is also demonstrated to power light-emitting diodes by harvesting energy from stimulated tidal flow. The high robustness of the R-TENG is also validated based on the stable electrical output after continuous rolling motion. Therefore, the hybrid R-TENG and EMG device renders an effective and sustainable approach toward large-scale blue energy harvesting in a broad frequency range.

摘要

海洋能源理论上是一种巨大的清洁可再生能源,可以产生比全球所需电力更多的电力,而且不会向大气中增加任何污染。然而,由于缺乏有效的技术,这种蓝色能源几乎没有被开发出来,以满足人类社会的能源需求。在这项工作中,开发了一种完全封装的混合纳米发电机,它由滚动摩擦纳米发电机(R-TENG)和电磁发电机(EMG)组成,用于收集水动力能。R-TENG(体积为 45 立方厘米,重量为 28.3 克)在低频范围内(<1.8 Hz)的出色输出性能补充了 EMG(体积为 337 立方厘米,重量为 311.8 克)在相同范围内的无效输出,从而使混合纳米发电机在广泛的工作频率范围内提供有价值的输出。因此,混合纳米发电机可以同时最大化能量转换效率和拓宽工作频率。在给电容器充电方面,这种混合纳米发电机不仅提供了 TENG 组件的高压和持续充电,还提供了 EMG 组件的快速充电速度。混合纳米发电机还通过从受激潮流中收集能量来为发光二极管供电,展示了其实用性。R-TENG 的高鲁棒性也通过连续滚动运动后的稳定电输出得到了验证。因此,混合 R-TENG 和 EMG 装置为在广泛的频率范围内有效和可持续地大规模收集蓝色能源提供了一种方法。

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