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Hierarchical NiSe@Co-2(CO3)(OH)(2) heterogeneous nanowire arrays on nickel foam as electrode with high areal capacitance for hybrid supercapacitors

机译:在镍泡沫上的等级@ CO-2(CO3)(OH)(2)异质纳米线阵列作为杂交超级电容器具有高面积电容的电极

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摘要

To meet the demand for ever-increasing energy storage and conversion, it is most important to fabricate high-performance electrodes by matching the electrode materials to nanostructural design. In this research, for the first time, unique hierarchical NiSe@Co-2(CO3)(OH)(2) heterogeneous nanowire arrays were successfully constructed onto the nickel foam by a simple two-step soft-chemical approach for application as electrodes of supercapacitors. NiSe nanowires with superior conductivity were designed for builting in situ onto the Ni foam to exert their electrochemical properties, and more importantly, to serve as a bridge for high-speed electron transport between the electroactive material and the current collector. Furthermore, Co-2(CO3)(OH)(2) nanowires were horizontally constructed onto a vertical NiSe precursor to form a 1-D heterostructure, which provided more electrochemically active sites and significantly increased the space utilization of the current collector surface. In particular, abundant pores and heterogeneous interfaces existed in the heterogeneous network that were composed of interlaced nanowires, which worked well with the inherently superior conductivity of the selenide material to provide a fast dual-channel for electrolyte penetration and electron transportation. Moreover, the hierarchical electrode achieved an outstanding areal specific capacitance of 9.56 F cm(-2) (at 4 mAcm(-2)) and a rare capacitance retention of 68.1% (current density increased from 4 to 80mA cm(-2)). A hybrid supercapacitor of NiSe@Co-2(CO3)(OH)(2)//AC was assembled and exhibited competitive energy density and power density, confirming its potential as a promising electrode for next-generation electrochemical energy storage. (c) 2018 Elsevier Ltd. All rights reserved.
机译:为了满足不断增加的能量存储和转换的需求,通过将电极材料与纳米结构设计匹配来制造高性能电极是最重要的。在本研究中,首次,通过简单的两步软化化学方法作为电极,通过简单的两步软化物方法成功构建到镍泡沫上的独特等级@ Co-2(OH)(2)的异质纳米线阵列超级电容器。具有卓越的导电率的NISE纳米线用于向Ni泡沫构成,以施加其电化学特性,更重要的是,用作电活性材料和集电器之间的高速电子传输的桥梁。此外,CO-2(CO 3)(OH)(2)纳米线水平构建在垂直NISE前体上以形成1-D异质结构,其提供了更多的电化学活性位点并显着提高了集电器表面的空间利用空间。特别地,在异构网络中存在丰富的孔隙和异质界面,其由隔行扫描纳米线组成,其与硒化物材料的固有优异的导电率良好,以提供用于电解质穿透和电子传输的快速双通道。此外,等一体,等一体达到了9.56f cm(-2)的出色的面积特异性电容(在4mcm(-2))中,罕见的电容保留为68.1%(电流密度从4到80mA cm(-2)增加) 。组装了NISE @ CO-2(CO3)(OH)(2)// AC的杂交超级电容器并表现出竞争的能量密度和功率密度,确认其作为下一代电化学能量存储的有希望的电极的潜力。 (c)2018年elestvier有限公司保留所有权利。

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  • 来源
    《Electrochimica Acta》 |2019年第2019期|共12页
  • 作者单位

    Harbin Engn Univ Key Lab Superlight Mat &

    Surface Technol Minist Educ Harbin 150001 Heilongjiang Peoples R China;

    Harbin Engn Univ Key Lab Superlight Mat &

    Surface Technol Minist Educ Harbin 150001 Heilongjiang Peoples R China;

    Harbin Engn Univ Key Lab Superlight Mat &

    Surface Technol Minist Educ Harbin 150001 Heilongjiang Peoples R China;

    Harbin Engn Univ Key Lab Superlight Mat &

    Surface Technol Minist Educ Harbin 150001 Heilongjiang Peoples R China;

    Harbin Engn Univ Key Lab Superlight Mat &

    Surface Technol Minist Educ Harbin 150001 Heilongjiang Peoples R China;

    Harbin Engn Univ Key Lab Superlight Mat &

    Surface Technol Minist Educ Harbin 150001 Heilongjiang Peoples R China;

    Heilongjiang Univ Key Lab Funct Inorgan Mat Chem Minist Educ Harbin 150086 Heilongjiang Peoples R China;

    Heilongjiang Univ Key Lab Funct Inorgan Mat Chem Minist Educ Harbin 150086 Heilongjiang Peoples R China;

    Harbin Engn Univ Key Lab Superlight Mat &

    Surface Technol Minist Educ Harbin 150001 Heilongjiang Peoples R China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 电化学工业;物理化学(理论化学)、化学物理学;
  • 关键词

    Nickel selenide; Cobalt carbonate hydroxide; Hierarchical structure; Heterogenous nanowire arrays; Hybrid supercapacitor;

    机译:硒化镍;碳酸钴氢氧化物;等级结构;异源纳米线阵列;杂交超级电容器;

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