期刊
ADVANCED ENERGY MATERIALS
卷 11, 期 31, 页码 -出版社
WILEY-V C H VERLAG GMBH
DOI: 10.1002/aenm.202101356
关键词
charge clamping; direct-current; integrated device; multimode coupling; triboelectric nanogenerators
类别
资金
- National Key R&D Project from the Minister of Science and Technology [2016YFA0202701, 2016YFA0202704]
- Beijing Municipal Science and Technology Commission [Z171100002017017]
This study presents a method to enhance the output performance of triboelectric nanogenerators (TENGs) using charge clamping, and demonstrates an integrated device based on CC-TENG for wind energy capture.
As a microenergy harvesting device, the output performance of triboelectric nanogenerators (TENGs) has long been limited by their surface charges. In this work, an enhancement of the output performance of TENGs via charge clamping (CC-TENG) is proposed. The device is comprised of a mechanical-switch direct-current TENG (MDC-TENG), charge clamping module (CCM), and main-TENG. During operation, the CCM is employed to accumulate and clamp the unidirectional charge generated by the MDC-TENG. And then, the accumulated charges flow between CCM and main-TENG. With the increase of transferred charges, the output performance can be effectively improved. In addition, the MDC-TENG is employed to reduce both power dissipation and circuit complexity. Furthermore, an integrated device based on the CC-TENG is demonstrated which harvests wind energy and attains a charge output of 1.01 mu C. Moreover, a multimode coupling is adopted, that is, an alternating-current TENG operating in contact-separation mode and a direct-current TENG operating in a lateral-sliding mode that can be employed in environments for which multiple motions coexist. The device provides a reference to improve output performance in the context of wind energy capture.
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