Harvesting Environment Mechanical Energy by Direct Current Triboelectric Nanogenerators

被引:0
作者
Chuncai Shan
Kaixian Li
Yuntao Cheng
Chenguo Hu
机构
[1] Chongqing University,School of Physics
[2] Chongqing University,School of Energy and Engineering
来源
Nano-Micro Letters | 2023年 / 15卷
关键词
Triboelectric nanogenerators; Direct current; Working mechanism;
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摘要
As hundreds of millions of distributed devices appear in every corner of our lives for information collection and transmission in big data era, the biggest challenge is the energy supply for these devices and the signal transmission of sensors. Triboelectric nanogenerator (TENG) as a new energy technology meets the increasing demand of today's distributed energy supply due to its ability to convert the ambient mechanical energy into electric energy. Meanwhile, TENG can also be used as a sensing system. Direct current triboelectric nanogenerator (DC-TENG) can directly supply power to electronic devices without additional rectification. It has been one of the most important developments of TENG in recent years. Herein, we review recent progress in the novel structure designs, working mechanism and corresponding method to improve the output performance for DC-TENGs from the aspect of mechanical rectifier, tribovoltaic effect, phase control, mechanical delay switch and air-discharge. The basic theory of each mode, key merits and potential development are discussed in detail. At last, we provide a guideline for future challenges of DC-TENGs, and a strategy for improving the output performance for commercial applications.[graphic not available: see fulltext]
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  • [1] Ryu H(2019)Hybrid energy harvesters: toward sustainable energy harvesting Adv. Mater. 31 1802898-1431
  • [2] Yoon HJ(2022)MXenes for energy harvesting Adv. Mater. 34 2108560-1825
  • [3] Kim SW(2021)Nanogenerators for smart cities in the era of 5g and internet of things Joule 5 1391-323
  • [4] Wang Y(2019)Route towards sustainable smart sensors: Ferroelectric polyvinylidene fluoride-based materials and their integration in flexible electronics Chem. Soc. Rev. 48 1787-334
  • [5] Guo T(2021)Electron-ion coupling mechanism to construct stable output performance nanogenerator Research 2021 9817062-5194
  • [6] Tian Z(2002)Contact electrification phenomena on phosphor particle surfaces J. Lumin. 100 317-4210
  • [7] Bibi K(2020)Electron-transfer mechanisms for confirmation of contact-electrification in zno/polyimide-based triboelectric nanogenerators Nano Energy 75 104818-6254
  • [8] Zhang YZ(2012)Flexible triboelectric generator! Nano Energy 1 328-457
  • [9] Zhao X(2016)Self-powered electrochemistry for the oxidation of organic molecules by a cross-linked triboelectric nanogenerator Adv. Mater. 28 5188-7467
  • [10] Askari H(2022)High-performance liquid crystalline polymer for intrinsic fire-resistant and flexible triboelectric nanogenerators Adv. Mater. 34 2204543-5405