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用于水电收集的高性能聚酰亚胺基水-固体摩擦纳米发电机

High-Performance Polyimide-Based Water-Solid Triboelectric Nanogenerator for Hydropower Harvesting.

作者信息

Tang Ning, Zheng Youbin, Yuan Miaomiao, Jin Ke, Haick Hossam

机构信息

School of Aerospace Science and Technology, Xidian University, Xi'an, Shaanxi 710126, China.

Department of Chemical Engineering and Russell Berrie Nanotechnology Institute, Technion-Israel Institute of Technology, Haifa 3200003, Israel.

出版信息

ACS Appl Mater Interfaces. 2021 Jul 14;13(27):32106-32114. doi: 10.1021/acsami.1c06330. Epub 2021 Jul 5.

Abstract

Water-solid triboelectric nanogenerators (TENGs) are insensitive to ambient humidity, providing a wide range of possibilities for designing stable water-energy-based harvesters and self-powered sensors. However, the wide application of most water-solid TENGs has been limited by low triboelectrification performance. To boost the output performance of water-solid TENGs, a newly structured TENG has been developed by adding a polyimide (PI) as a charge storage intermediate layer between the friction layer and the conducting layer, significantly improving the output performance (1.260 mW), with a 5-fold increase compared to the water-solid TENG without the PI intermediate layer (0.234 mW). This analysis shows that adding an intermediate layer with a high density of electron capture sites to the TENG results in more triboelectric charge being retained, thereby improving the electrical performance of TENG. The electrical performance of TENG is related to the thickness of the PI layer, but this is not a positive correlation. Contact angles and falling heights between the droplet and the device also affect the output performance. Finally, the water-solid PI-TENG we have developed has promise in hydropower harvesting capabilities and can be used to power warning signals on a dark and rainy night to ensure the safety of people.

摘要

水-固摩擦电纳米发电机(TENGs)对环境湿度不敏感,为设计稳定的水能收集器和自供电传感器提供了广泛的可能性。然而,大多数水-固TENGs的广泛应用受到低摩擦起电性能的限制。为了提高水-固TENGs的输出性能,通过在摩擦层和导电层之间添加聚酰亚胺(PI)作为电荷存储中间层,开发了一种新结构的TENG,显著提高了输出性能(1.260 mW),与没有PI中间层的水-固TENG(0.234 mW)相比增加了5倍。该分析表明,在TENG中添加具有高密度电子捕获位点的中间层会导致更多的摩擦电荷被保留,从而提高TENG的电性能。TENG的电性能与PI层的厚度有关,但这不是正相关。液滴与器件之间的接触角和下落高度也会影响输出性能。最后,我们开发的水-固PI-TENG在水力发电能力方面具有潜力,可用于在黑暗雨夜为警示信号供电,以确保人们的安全。

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