4.7 Article

Flexible Layered-Graphene Charge Modulation for Highly Stable Triboelectric Nanogenerator

期刊

NANOMATERIALS
卷 11, 期 9, 页码 -

出版社

MDPI
DOI: 10.3390/nano11092276

关键词

graphene; triboelectric nanogenerator; charge trapping layer; flexible; stability; energy harvesting

资金

  1. Ministry of Science and Technology, Taiwan under grant MOST [109-2221-E-182-013-MY3, 110-2622-8-182-001-TS1, 110-2119-M-492-002-MBK]
  2. Chang Gung Memorial Hospital [CMRPD2K0171, CORPD2J0072]

向作者/读者索取更多资源

This study successfully developed a novel multilayer graphene-based TENG, achieving a significant increase in charge density by introducing a charge trapping layer, resulting in a substantial improvement in output power and device stability. The TENG was able to power up to 20 green LEDs and provide sufficient power for an electronic timer, providing a new insight for energy harvesting in next-generation flexible electronics.
The continuous quest to enhance the output performance of triboelectric nanogenerators (TENGs) based on the surface charge density of the tribolayer has motivated researchers to harvest mechanical energy efficiently. Most of the previous work focused on the enhancement of negative triboelectric charges. The enhancement of charge density over positive tribolayer has been less investigated. In this work, we developed a layer-by-layer assembled multilayer graphene-based TENG to enhance the charge density by creatively introducing a charge trapping layer (CTL) Al2O3 in between the positive triboelectric layer and conducting electrode to construct an attractive flexible TENG. Based on the experimental results, the optimized three layers of graphene TENG (3L-Gr-TENG) with CTL showed a 30-fold enhancement in output power compared to its counterpart, 3L-Gr-TENG without CTL. This remarkably enhanced performance can be ascribed to the synergistic effect between the optimized graphene layers with high dielectric CTL. Moreover, the device exhibited outstanding stability after continuous operation of >2000 cycles. Additionally, the device was capable of powering 20 green LEDs and sufficient to power an electronic timer with rectifying circuits. This research provides a new insight to improve the charge density of Gr-TENGs as energy harvesters for next-generation flexible electronics.

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