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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Cu Doped Zinc Cobalt Oxide Based Solid-State Symmetric Supercapacitors: A Promising Key for High Energy Density
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Cu Doped Zinc Cobalt Oxide Based Solid-State Symmetric Supercapacitors: A Promising Key for High Energy Density

机译:Cu掺杂锌钴基固态对称超级电容器:高能量密度的有希望的钥匙

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Improvement in the capacitance and energy density of zinc cobalt oxide based materials is vital for creating supercapacitors with excellent electrochemical performance. We synthesized Cu doped zinc cobalt oxide (Zn1-xCuxCo2O4) nanostructures via a facile hydrothermal method to accomplish excellent supercapacitive performance. Significantly, the incorporation of Cu into ZnCo2O4 brings a 2 times increase in specific surface area (52 m(2) g(-1)) and decrease in charge transfer resistance for the Zn0.7Cu0.3Co2O4 (x = 0.3) sample. Consequently, the Cu doped Zn07Cu0.3Co2O4 electrode displays a high specific capacitance of 1425 F g(-1) which is 1.55-fold increased as compared to 917 F g(-1) of the pristine ZnCo2O4 electrode. About 96% of capacitance is retained by the Zn0.7Cu0.3Co2O4. after 2000 charge-discharge cycles. Later, a Zn0.7Cu0.3Co2O4 based solid-state symmetric supercapacitor has been fabricated, which displays a potential window of 1.5 V with enlarged cycling stability. The assembled device shows a high energy density of 55 W h kg(-1) at a power density of 2621 W K g(-1) and successfully lightens the yellow LED of 1.5 V. The immense improvement in electrochemical performance is credited to the increased surface area and electronic conductivity of the electrode. The obtained results clearly evidenced that the fabricated solid-state symmetric supercapacitor has the potential to be used in flexible energy storage devices.
机译:锌基氧化锌基材料的电容和能量密度的改善对于产生具有优异电化学性能的超级电容器至关重要。通过容易水热法合成Cu掺杂锌钴氧化物(Zn1-Xcuxco2O4)纳米结构,以实现优异的超级电容性能。值得注意的是,Cu掺入ZnCo 2 O 4中的比表面积增加2倍(52m(2)g(-1)),并降低Zn0.7Cu0.3CO2O4(X = 0.3)样品的电荷转移电阻。因此,Cu掺杂的Zn07Cu0.3Co2O4电极显示出1425V(-1)的高比电容,其与原始ZnCo2O4电极的917 f G(-1)相比增加1.55倍。 Zn0.7Cu0.3CO2O4保留约96%的电容。 2000年充电放电循环后。后来,制造了一种基于Zn0.7Cu0.3Co2O4的固态对称超级电容器,其显示了具有扩大的循环稳定性1.5V的潜在窗口。装配的装置节目55 W时公斤(-1)2621 WK g的功率密度(-1),并成功地减轻了1.5 V的黄色LED在电化学性能的巨大改善记入增加高能量密度电极的表面积和电子电导率。所得结果清楚地证明了制造的固态对称超级电容器具有柔性能量存储装置的可能性。

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