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Synthesis and characterization of free-standing activated carbon/reduced graphene oxide film electrodes for flexible supercapacitors

机译:柔性超级电容器用自立式活性炭/氧化石墨烯薄膜电极的合成与表征

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Free-standing, binder-free and flexible activated carbon/reduced graphene oxide (AC/rGO) composite films with various ratios were fabricated via a facile vacuum-filtration process. It was proved that two-dimensional rGO sheets were an ideal adhesive support for AC. The optimal ratio (AC?:?rGO = 2?:?1) was determined and the film electrodes displayed a high area specific capacitance of 486 mF cm?2 with a mass of 2.35 mg cm?2 (specific capacitance of 207 F g?1) at 0.2 mA cm?2. The assembled supercapacitor had the advantages of being flexible, lightweight, cheap and environmentally friendly, and can achieve a superior energy density of 16.2 μW h cm?2 at a power density of 100 μW cm?2 and 85% capacitance retention after 10?000 charging/discharging cycles. Moreover, 90% of the capacitance was retained after 1000 bending cycles and there was almost no performance change under different bending angles. These results well demonstrated a great potential for application of AC/rGO film electrodes in wearable and portable electronics.
机译:通过简便的真空过滤工艺 制备了各种比例的自立,无粘结剂,柔性活性炭/氧化石墨烯(AC / rGO)复合薄膜。事实证明,二维rGO片是AC的理想粘合剂支撑。确定最佳比例(AC2:?rGO = 2?:?1),薄膜电极显示出486 mF cm ?2 的高面积比电容,且在0.2 mA cm <时的质量为2.35 mg cm ?2 (比电容为207 F g ?1 ) small> ?2 。组装后的超级电容器具有柔性,轻便,便宜和环保的优点,并且在功率密度为时可以实现16.2μWh cm ?2 的优异能量密度。 100 000 W cm ?2 ,经过10 000次充电/放电循环后电容保持率为85%。此外,在1000次弯曲循环后仍保留了90%的电容,并且在不同的弯曲角度下几乎没有性能变化。这些结果很好地证明了AC / rGO薄膜电极在可穿戴和便携式电子产品中的巨大应用潜力。

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