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All-carbon flexible supercapacitors based on electrophoretic deposition of graphene quantum dots on carbon cloth

机译:基于石墨烯量子点在碳布上电泳沉积的全碳柔性超级电容器

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摘要

In this work, a flexible, free-standing supercapacitor electrode fabricated using a combination of Graphene Quantum Dots (GQD) and carbon cloth. The GQD was synthesized using a simple peroxide-assisted hydrothermal method and was electrodeposited on carbon cloth to ensure intimate contact. The presence of GQD on the surface of the carbon cloth greatly enhanced its capacitance, resulting in a flexible EDLC electrode with an areal capacitance of 70 mF cm(-2) at a scan rate of 50 mV(s-1) even with a negligible mass loading. We have also demonstrated a fully-flexible symmetric full-cell fabricated using the GQD/carbon cloth composite with a high-rate capability, showing a rectangular CV curve even at a high scan rate of 1 V s(-1) and capacitance of 24 mF cm(-2) at a scan rate of 50 mVs(-1) when flexed and un-flexed.
机译:在这项工作中,使用石墨烯量子点(GQD)和碳布的组合制成的柔性,独立式超级电容器电极。 GQD是使用简单的过氧化物辅助水热法合成的,并电沉积在碳布上以确保紧密接触。碳布表面上存在GQD极大地增强了其电容,从而形成了柔性EDLC电极,其在扫描速率为50 mV(s-1)时的面积电容为70 mF cm(-2),甚至可以忽略不计。大量加载。我们还演示了使用具有高倍率能力的GQD /碳布复合材料制成的全柔性对称全电池,即使在1 V s(-1)的高扫描速率和24的电容下也显示出矩形CV曲线弯曲和不弯曲时扫描速度为50 mVs(-1)时的mF cm(-2)。

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