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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Hierarchical core-shell structured CoNi2S4/Ni3S2@Ni(OH)(2) nanosheet arrays as electrode for electrochemical energy storage
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Hierarchical core-shell structured CoNi2S4/Ni3S2@Ni(OH)(2) nanosheet arrays as electrode for electrochemical energy storage

机译:分层核心 - 壳结构ConI2S4 / Ni3S2 @ Ni(OH)(2)纳米换阵列作为电化学能量存储的电极

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摘要

Herein, hierarchical core-shell structured CoNi2S4/Ni3S2@Ni(OH)(2) nanosheet arrays are synthesized through a facile method. The electrochemical results show that combining CoNi2S4/Ni3S2 nanosheet arrays (as core) with Ni(OH)(2) nanosheets (as shell) is an effective way to improve electrochemical capacitive properties due to the synergetic effect between CoNi2S4/Ni3S2 and Ni(OH)(2). The as-prepared CoNi2S4/Ni3S2@Ni(OH)(2) exhibits a high capacity of about 772.2 mu Ah cm(-2) at a current density of 1 mA cm(-2) , with an excellent capacity at very high current densities e.g. 500 mu Ah cm(-2) at 30 mA cm(-2) and an outstanding durability (ca. 98% of the capacity retention after 4000 cycles). Moreover, the electrochemical capacitive property of CoNi2S4/Ni3S2@Ni(OH)(2) is also evaluated in an asymmetric two-electrode cell assembled by using CoNi2S4/Ni3S2@Ni(OH)(2) as the cathode and the active carbon (AC) as the anode. The asymmetric cell shows a high energy density of about 0.432 mWh cm(-2) when the power density was 1.646 mW cm(-2), making it a promising electrode material for practical energy storage applications. (C) 2019 Elsevier B.V. All rights reserved.
机译:这里,通过容易方法合成分层核心 - 壳结构Coni2S4 / Ni3S2 @ Ni(OH)(2)纳米晶片阵列。电化学结果表明,将Coni2S4 / Ni3S2纳米片阵列(作为核心)与Ni(OH)(2)纳米片(如壳)相结合,是由于Coni2S4 / Ni3S2和Ni之间的协同效果来改善电化学电容性能的有效方法(哦)(2)。制备的Coni2S4 / Ni3S2 @ Ni(OH)(2)在电流密度为1 mAcm(-2)的电流密度下具有大约772.2μmAhcm(-2)的高容量,具有极高的电流容量密度例如500 mu ah cm(-2)在30 ma cm(-2),突出耐久性(约3000次循环后的容量保留的98%)。此外,在通过使用Coni2S4 / Ni3S2-Ni(OH)(2)作为阴极和活性炭()在通过使用Coni2S4 / Ni3S2 @ Ni(OH)(2)和活性炭( AC)作为阳极。当功率密度为1.646mW cm(-2)时,非对称细胞显示高能密度为约0.432mwh cm(-2),使其成为实际储能应用的有希望的电极材料。 (c)2019 Elsevier B.v.保留所有权利。

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