首页> 外文期刊>Journal of Energy Storage >Single-pot hydrothermal synthesis of copper molybdate nanosheet arrays as electrode materials for high areal-capacitance supercapacitor
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Single-pot hydrothermal synthesis of copper molybdate nanosheet arrays as electrode materials for high areal-capacitance supercapacitor

机译:单盆水热合成铜钼酸盐纳米片阵列作为高面积电容超级电容器的电极材料

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Supercapacitors have attracted significant attention due to the fast charge-discharge ability, excellent rate capability, and long-time stability. In the following study, for the first time, copper molybdate nanosheets (CuMoO4 NSs) grown on nickel foam (NF) have been successfully constructed by a single-pot hydrothermal method. The as-obtained nickel-foam based copper molybdate nanosheets can be directly used as the electrode for the supercapacitors. The electrochemical properties of the CuMoO4 NSs as binder-free electrode for supercapacitor was examined by cyclic voltammetry (CV), galvanostatic charge, and discharge analysis (GCD), electrochemical impedance spectroscopy (EIS), and cycle life measurements in 2 M KOH electrolyte. The GCD analysis exhibited a high specific capacitance of 2259.55 F g(-1) at 1 A g(-1), and good rate capability (1260.14 F g(-1) at 45 A g(-1)) in a 2 M KOH electrolyte. The cyclic stability analysis showed excellent cycling stability of 90.08% capacitance retention after 5000 GCD cycles at 16 A g(-1), together with similar to 100% coulomb efficiency. Moreover, an asymmetric supercapacitor was fabricated using CuMoO4 NSs on Ni foam (CuMoO4 NSs/NF) as the positive electrode, and activated carbon on Ni foam (AC/NF) as the negative electrode. The device displayed an operation voltage of 1.2 V, and high specific energy of 52.51 Wh kg(-1) at a specific power of 600 W kg(-1). Moreover, the device exhibited good cycling stability of 78.6% capacitance retention after 5000 cycles at 4 A g(-1). Also, the asymmetric device displays improved low self-discharge behavior by charging it at an optimal current density and time, and the self-discharge is greatly suppressed due to the presence of 3D network of CuMoO4 NSs grown on nickel foam. This work demonstrates that CuMoO4 NSs could be a promising electrode for high-performance energy storage devices.
机译:超级电容器已经引起显著的关注,由于快速充放电能力,优异的倍率性能和长期稳定性。在下面的研究中,在第一次,生长在镍发泡体(NF)钼酸铜纳米片(CuMoO4 NSS)已经成功地通过单罐水热法构成。将如此得到的镍泡沫铜基钼酸纳米片可以直接用作用于超级电容器的电极。的CuMoO4奈米球作为超级电容器的不含粘合剂的电极的电化学性质由循环伏安法(CV),恒电流充,放电分析(GCD),电化学阻抗谱(EIS),和循环寿命的测量在2M KOH电解质检查。在一个2 M中的GCD分析在1 A G(-1),和良好的倍率性能表现出2259.55 F G(-1)的高的比电容(1260.14 F G(-1)在45克(-1)) KOH电解质。循环稳定性分析表明90.08%的电容保持率优异的循环稳定性在16 A G(-1)5000 GCD次循环后,一起具有类似于100%库仑效率。此外,非对称超电容器,使用在Ni泡沫CuMoO4 NSS(CuMoO4 NSS / NF)作为正电极制成,和活性炭上的Ni泡沫(AC / NF)作为负电极。该装置在600瓦特公斤(-1)的特定功率显示1.2 V的工作电压,和52.51千克瓦(-1)的高比能。此外,该装置在4 A G(-1)5000次循环后表现出78.6%的电容保持的良好的循环稳定性。此外,非对称装置显示通过在最佳电流密度和时间的充电它改进的低自放电的行为,和自放电被由于CuMoO4 NS的三维网络的生长在镍泡沫的存在大大地抑制。这项工作表明,CuMoO4 NS的可能是高性能的储能装置有前途的电极。

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