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Flexible, transparent and high-power triboelectric generator with asymmetric graphene/ITO electrodes

机译:具有不对称石墨烯/ ITO电极的灵活,透明且高功率的摩擦发电机

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摘要

The reported flexible and transparent triboelectric generator (FTTG) can only output ultralow power density (similar to 2 mu W cm(-2)), which has seriously hindered its further development and application. The low power density of FTTG is mainly limited by the transparent material and the electrode structure. Herein, for the first time, a FTTG with a superior power density of 60.7 mu W cm(-2) has been fabricated by designing asymmetric electrodes where graphene and indium tin oxide (ITO) act as top and bottom electrodes respectively. Moreover, the performance of FTTG with graphene/ITO (G/I) asymmetric electrodes (GI-FTTG) almost remains unchanged even after 700 cycles, indicating excellent mechanical stability. The excellent performance of GI-FTTG can be attributed to the suitable materials and unique asymmetric electrode structure: the extraordinary flexibility of the graphene top electrode ensures the GI-FTTG excellent mechanical robustness and stability even after longer cycles, and the bottom electrode with very low sheet resistance guarantees lower internal resistance and higher production rate of induction charges to obtain higher output power density. It shows that light-emitting diodes (LED) can be easily powered by GI-FTTG, which demonstrates that the GI-FTTG is very promising for harvesting electrical energy from human activities by using flexible and transparent devices.
机译:报道的灵活透明的摩擦发电机(FTTG)只能输出超低功率密度(类似于2μW cm(-2)),严重阻碍了其进一步的开发和应用。 FTTG的低功率密度主要受透明材料和电极结构的限制。在此,通过设计不对称电极,石墨烯和铟锡氧化物(ITO)分别用作顶部和底部电极,首次制造了功率密度为60.7μWcm(-2)的FTTG。此外,FTTG与石墨烯/ ITO(G / I)不对称电极(GI-FTTG)的性能甚至在700次循环后也几乎保持不变,表明具有出色的机械稳定性。 GI-FTTG的出色性能归因于合适的材料和独特的不对称电极结构:石墨烯顶部电极的非凡柔韧性确保了GI-FTTG即使在更长的循环后仍具有出色的机械强度和稳定性,而底部电极具有极低的性能薄层电阻可确保更低的内部电阻和更高的感应电荷生产率,从而获得更高的输出功率密度。它显示了GI-FTTG可以轻松为发光二极管(LED)供电,这表明GI-FTTG通过使用灵活透明的设备,非常有希望从人类活动中收集电能。

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