| Literature DB >> 28094509 |
Xiaofeng Wang1,2, Simiao Niu1, Fang Yi1,3, Yajiang Yin2, Chenglong Hao2, Keren Dai2, Yue Zhang3, Zheng You2, Zhong Lin Wang1,4.
Abstract
Vibration is one of the most common energy sources in ambient environment. Harvesting vibration energy is a promising route to sustainably drive small electronics. This work introduces an approach to scavenge vibrational energy over a wide frequency range as an exclusive power source for continuous operation of electronics. An elastic multiunit triboelectric nanogenerator (TENG) is rationally designed to efficiently harvest low-frequency vibration energy, which can provide a maximum instantaneous output power density of 102 W·m-3 at as low as 7 Hz and maintain its stable current outputs from 5 to 25 Hz. A self-charging power unit (SCPU) combining the TENG and a 10 mF supercapacitor gives a continuous direct current (DC) power delivery of 1.14 mW at a power management efficiency of 45.6% at 20 Hz. The performance of the SCPU can be further enhanced by a specially designed power management circuit, with a continuous DC power of 2 mW and power management efficiency of 60% at 7 Hz. Electronics such as a thermometer, hygrometer, and speedometer can be sustainably powered solely by the harvested vibration energy from a machine or riding bicycle. This approach has potential applications in self-powered systems for environment monitoring, machine safety, and transportation.Keywords: elastic structure; mechanical energy harvesting; triboelectric nanogenerator; vibrational energy
Year: 2017 PMID: 28094509 DOI: 10.1021/acsnano.6b07633
Source DB: PubMed Journal: ACS Nano ISSN: 1936-0851 Impact factor: 15.881