首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >(152421)In-situ growth of hierarchical Ni-Co LDH/CoMoO_4 nanosheets arrays on Ni foam for pseudocapacitors with robust cycle stability
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(152421)In-situ growth of hierarchical Ni-Co LDH/CoMoO_4 nanosheets arrays on Ni foam for pseudocapacitors with robust cycle stability

机译:(152421)位于具有鲁棒循环稳定性的伪偶联器的镍泡沫泡沫的分层Ni-Co LDH / COMOON_4纳米阵列的原位生长

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摘要

In this work, a nanoarray electrode composed of CoMoO_4 nanosheets (CoMoO_4 NSs) and Co-Ni layered double hydroxide (Ni-Co LDH) nanosheets supported on Ni foam (NF) is successfully constructed by an in-situ growth route. Firstly, cobalt molybdenum arrays were fabricated by a mild hydrothermal reaction as the core. Afterwards, the as-prepared electrode was utilized as a skeleton to immobilize Ni-Co LDH with an electrochemical deposition method. The electrochemical performance of the prepared Ni-Co LDH/CoMoO_4/NF electrode, compared with CoMoO_4/NF electrode, illustrated a high gravimetric specific capacitance (1812 Fg~(-1) at 1 Ag~(-1)), excellent rate capability (68% at 50 Ag~(-1)), good cycle stability (93.7% capability retention after 5000 cycles) and the maximum energy density and power density of 62.92 Wh kg~(-1) and 12.5 kW kg~(-1), respectively. Moreover, an asymmetric supercapacitor (Ni-Co LDH/ CoMoO_//AC) is fabricated with excellent electrochemical performance. The asymmetric supercapacitor with a maximum voltage of 1.6 V has demonstrated a high energy density of 79.28 Wh kg"1, a high power density of 11.97 kW kg~(-1) at 51.2 Wh kg"1 and outstanding cyclic stability with the capacitance retention of 93% after 5000 cycles. The increased pseudocapacitive behaviors are related to its unique core/shell structure which provides facilitated ion diffusion, rapid electron transport kinetics, and good strain accommodation that makes it a potential choice for electrochemical energy storage owing to the their considerable electrochemical properties.
机译:在这项工作中,纳米片CoMoO_4(CoMoO_4 NSS)和Co-Ni系构成的纳米阵列电极层叠支撑在镍泡沫(NF)双氢氧化物(镍钴LDH)纳米片被成功地通过原位生长路线构成。首先,钴钼阵列是由作为核的温和水热反应制造。然后,将所制备的电极被利用作为骨架以固定镍钴LDH与电化学沉积方法。的电化学性能制备镍钴LDH / CoMoO_4 / NF电极,与CoMoO_4 / NF电极相比,(在1的Ag〜(-1)1812蛋白原〜(-1)),优良的倍率性能所示的高的重量比电容,良好的循环稳定性(5000次循环后93.7%保留能力)和62.92千克瓦〜(-1)和12.5千瓦公斤〜的最大能量密度和功率密度((在50的Ag〜(-1)68%)-1 ), 分别。此外,非对称超电容器(镍钴LDH /的CoMoO _ // AC)被制造具有优良的电化学性能。与1.6伏的最大电压的不对称超级电容器已证明的79.28千克瓦高能量密度的“1,高功率密度11.97千瓦公斤〜(-1)在51.2瓦公斤” 1,并与电容保持优秀的循环稳定性5000次循环后93%。增加的赝电容行为有关,其独特的核/壳结构,其提供了使得它由于其相当大的电化学特性的电化学能量储存一个潜在选择易化的离子扩散,迅速电子传输动力学,和良好的应变住宿。

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