Triboelectric nanogenerator based wearable energy harvesting devices

被引:4
作者
Ding Ya-Fei [1 ,2 ]
Chen Xiang-Yu [1 ,2 ]
机构
[1] Chinese Acad Sci, Beijing Inst Nanoenergy & Nanosyst, Beijing Key Lab Micronano Energy & Sensor, CAS Ctr Excellence Nanosci, Beijing 100083, Peoples R China
[2] Univ Chinese Acad Sci, Sch Nanosci & Technol, Beijing 100049, Peoples R China
基金
中国国家自然科学基金;
关键词
triboelectric nanogenerator; wearable electronics; energy harvesting technology; MECHANICAL ENERGY; ELECTRONIC-SKIN; TECHNOLOGY; WATERPROOF; CONVERSION; SYSTEM; SENSOR;
D O I
10.7498/aps.69.20200867
中图分类号
O4 [物理学];
学科分类号
0702 ;
摘要
With the miniaturization and functionalization of electronic devices, wearable electronics has drawn generally attention, but the energy supply for wearable electronics becomes one of the most burning questions. The triboelectric nanogenerator based on the coupling effects of electrostatic induction and triboelectrification, which has low cost and wide material selection attributes, proves to be a powerful technology for converting low-frequency mechanical energy into electricity. In this review, the four fundamental modes of triboelectric nanogenerator and the physical mechanism of contact-electrification are presented first. Then, we introduce the research progress of wearable from the direct and indirect aspects. Directly wearable triboelectric nanogenerator can be integrated into a skin while indirectly wearable device is only allowed to assemble into user's clothing or its appendages. In addition, the power management circuits for driving electronic devices and energy storage are summarized. Finally, we discuss the current bottlenecks and present our perspectives on future directions in this field.
引用
收藏
页数:20
相关论文
共 87 条
[51]   Fully Elastic and Metal-Free Tactile Sensors for Detecting both Normal and Tangential Forces Based on Triboelectric Nanogenerators [J].
Ren, Zewei ;
Nie, Jinhui ;
Shao, Jiajia ;
Lai, Qingsong ;
Wang, Longfei ;
Chen, Jian ;
Chen, Xiangyu ;
Wang, Zhong Lin .
ADVANCED FUNCTIONAL MATERIALS, 2018, 28 (31)
[52]   A liquid PEDOT:PSS electrode-based stretchable triboelectric nanogenerator for a portable self-charging power source [J].
Shi, Jihong ;
Chen, Xiaoping ;
Li, Gengfei ;
Sun, Na ;
Jiang, Hongxue ;
Bao, Dequan ;
Xie, Lingjie ;
Peng, Mingfa ;
Liu, Yina ;
Wen, Zhen ;
Sun, Xuhui .
NANOSCALE, 2019, 11 (15) :7513-7519
[53]   More than energy harvesting - Combining triboelectric nanogenerator and flexible electronics technology for enabling novel micro-/nano-systems [J].
Shi, Qiongfeng ;
He, Tianyiyi ;
Lee, Chengkuo .
NANO ENERGY, 2019, 57 :851-871
[54]   Nanogenerators for wearable bioelectronics and biodevices [J].
Song, Peiyi ;
Yang, Guang ;
Lang, Tingting ;
Yong, Ken-Tye .
JOURNAL OF PHYSICS D-APPLIED PHYSICS, 2019, 52 (02)
[55]   Self-Powered Sensor Based on Bionic Antennae Arrays and Triboelectric Nanogenerator for Identifying Noncontact Motions [J].
Wang, Fan ;
Ren, Zewei ;
Nie, Jinhui ;
Tian, Jingwen ;
Ding, Yafei ;
Chen, Xiangyu .
ADVANCED MATERIALS TECHNOLOGIES, 2020, 5 (01)
[56]   Sustainably powering wearable electronics solely by biomechanical energy [J].
Wang, Jie ;
Li, Shengming ;
Yi, Fang ;
Zi, Yunlong ;
Lin, Jun ;
Wang, Xiaofeng ;
Xu, Youlong ;
Wang, Zhong Lin .
NATURE COMMUNICATIONS, 2016, 7
[57]   Freestanding Triboelectric-Layer-Based Nanogenerators for Harvesting Energy from a Moving Object or Human Motion in Contact and Non-contact Modes [J].
Wang, Sihong ;
Xie, Yannan ;
Niu, Simiao ;
Lin, Long ;
Wang, Zhong Lin .
ADVANCED MATERIALS, 2014, 26 (18) :2818-2824
[58]   Sliding-Triboelectric Nanogenerators Based on In-Plane Charge-Separation Mechanism [J].
Wang, Sihong ;
Lin, Long ;
Xie, Yannan ;
Jing, Qingshen ;
Niu, Simiao ;
Wang, Zhong Lin .
NANO LETTERS, 2013, 13 (05) :2226-2233
[59]   Self-powered nanotech - Nanosize machines need still tinier power plants [J].
Wang, Zhong Lin .
SCIENTIFIC AMERICAN, 2008, 298 (01) :82-+
[60]   Triboelectric Nanogenerator (TENG)-Sparking an Energy and Sensor Revolution [J].
Wang, Zhong Lin .
ADVANCED ENERGY MATERIALS, 2020, 10 (17)