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Nickel-cobalt layered double hydroxide nanosheets with reduced graphene oxide grown on carbon cloth for symmetric supercapacitor

机译:镍 - 钴层层双氢氧化物纳米片,其在碳布上生长在对称超级电容器上的碳布中生长

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Nickel hydroxide as a potential electrode material was widely used in supercapacitor, but its electrochemical performance is limited due to its low conductivity, insufficient structure and weak stability. In this work, we reported a simple "one-pot" hydrothermal method of vertically growing cobalt-nickel hydroxide (Co-Ni-OH) and rGO nanosheets on conductive carbon cloth (Co-Ni-OH/rGO/CC). We demonstrated that the capacitive performance of Co-Ni-OH electrode could be significantly improved by adding rGO with uniform vertically growing nanostructure, which shortened ion diffusion paths and avoided the interface resistance. As pseudocapacitors, the as-prepared Co-Ni-OH/rGO/CC electrode showed a notable enhanced specific capacitance (151.46 F g(-1) at 2.5 A g(-1)) and a good cycling stability (88.0% after 1000 cycles). Moreover, the symmetric supercapacitor composed of two as-prepared Co-Ni-OH/rGO/CC electrodes achieved a high energy density of 30.29 W h kg(-1) at a power density of 1500 W kg(-1) (based on active materials) and remarkable cycling stability (85.6% after 3000 cycles). This finding provides a simple and effective way to fabricate a promising electrode material for high-performance supercapacitor and other energy storage device.
机译:作为潜在电极材料的氢氧化镍广泛用于超级电容器,但由于其电导率低,结构不足和稳定性较弱,其电化学性能受到限制。在这项工作中,我们报道了一种简单的“单罐”水热法,其垂直生长氢氧化钴(Co-Ni-OH)和Rgo纳米片上的导电碳布(Co-Ni-OH / Rgo / Cc)。我们证明,通过用均匀的垂直生长纳米结构添加RGO可以显着改善Co-Ni-OH电极的电容性能,该纳米结构缩短了离子扩散路径并避免了界面电阻。作为假偶联器,AS制备的CO-NI-OH / RGO / CC电极显示出显着的增强特定电容(151.46fg(-1),在2.5 a g(-1)),良好的循环稳定性(1000后88.0%循环)。此外,由两种用作2个式的CO-OH / RGO / CC电极组成的对称超级电容器以1500W kg(-1)的功率密度,实现了30.29WH kg(-1)的高能量密度(基于活性材料)和显着的循环稳定性(3000次循环后85.6%)。该发现提供了一种简单有效的方法来制造高性能超级电容器和其他能量存储装置的有希望的电极材料。

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