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Electrochemical synthesis of NiCo layered double hydroxide nanosheets decorated on moderately oxidized graphene films for energy storage

机译:电化学合成尼科分层的两倍氢氧化nanosheets装饰适度氧化石墨烯薄膜储能

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The introduction of oxygenous functional groups onto graphene can provide additional pseudocapacitance for supercapacitors. However, how to balance the amount of introduced oxygenous functional groups and the reduced electrical conductivity arising from the disruption of the conjugated system remains a big challenge. Here, a controllable strategy is reported to prepare moderately oxidized reduced graphene oxide (MORGO) via an electrochemical oxidation process. The MORGO not only has oxygenous groups with appropriate quantities, but also preserves the highly crystalline structure of the - conjugated carbon framework. As a result, the MORGO films showed superior electrochemical properties to the pristine RGO films and other previously reported RGO films. Furthermore, the oxygenous groups and the conductivity of MORGO films can be easily adjusted by controlling the oxidation time. A hierarchical composite of NiCo-layered double hydroxide nanosheet arrays on MORGO films (MORGO/NiCo-LDH) was also constructed via electrochemical deposition to combine the advantages of electric double-layer electrode materials and faradaic electrode materials. The flexible solid-state supercapacitor fabricated with MORGO/NiCo-LDH film electrodes exhibits a high energy density (0.51 mW h cm(-3)), as well as a long cycle life (88.2% capacitance retention after 10000 cycles).
机译:含氧的官能团的引入到石墨烯可以提供额外的pseudocapacitance超级电容器。如何平衡的介绍了氧气的量官能团和降低电电导产生的中断共轭体系仍然是一个巨大的挑战。据报道,一个可控的策略准备适度氧化石墨烯氧化物减少(MORGO)通过电化学氧化过程。MORGO不仅有氧气的团体适当的数量,但也保留了高度-共轭的晶体结构碳框架。表现出优越的电化学性能原始RGO电影和其他之前报道RGO电影。MORGO电影可以很容易的电导率通过控制氧化时间调整。分层复合NiCo-layered双氢氧化对MORGO电影nanosheet数组(MORGO / NiCo-LDH)也通过构造结合电化学沉积电动双层电极的优点材料和感应电流的电极材料。灵活的固态超级电容器的MORGO / NiCo-LDH电影电极展品高能量密度(0.51 mW h厘米(3))长循环寿命(88.2%电容保留在10000周期)。

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