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Tricobalt tetroxide nanoplate arrays on flexible conductive fabric substrate: Facile synthesis and application for electrochemical supercapacitors

机译:柔性导电织物基底上的四氧化三钴纳米板阵列:电化学超级电容器的简便合成与应用

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Tricobalt tetroxide (Co3O4) nanoplate arrays (NPAs) were synthesized on flexible conductive fabric substrate (FCFs) by a facile two-electrode system based electrochemical deposition method, followed by a simple heat treatment process. Initially, cobalt hydroxide (Co(OH)(2)) NPAs were electrochemically deposited on FCFs by applying an external voltage of -1.5 V for 30 min. Then, the Co3O4 NPAs on FCFs was obtained by thermal treatment of as-deposited Co(OH)(2) NPAs on FCFs at 200 degrees C for 2 h. From the analysis of morphological and crystal properties, the Co3O4 NPAs were well integrated and uniformly covered over the entire surface of substrate with good crystallinity in the cubic phase. Additionally, the fabricated sample was directly used as a binder-free electrode to examine the feasibility for electrochemical supercapacitors using cyclic voltammetry and galvanic charge-discharge measurements in 1 M KOH electrolyte solution. The Co3O4 NPAs coated FCFs electrode exhibited a maximum specific capacitance of 145.6 Fig at a current density of 1 A/g and an excellent rate capability after 1000 cycles at a current density of 3 A/g. This facile fabrication method for integrating the Co3O4 nanostructures on FCFs could be a promising approach for advanced flexible electronic and energy-storage device applications. (C) 2015 Elsevier B.V. All rights reserved.
机译:四氧化三钴(Co3O4)纳米板阵列(NPA)通过基于电化学的简便两电极系统沉积在柔性导电织物基板(FCF)上,然后进行简单的热处理工艺。最初,通过施加-1.5 V的外部电压30分钟,将氢氧化钴(Co(OH)(2))NPA电化学沉积在FCF上。然后,通过在200摄氏度下对FCF上沉积的Co(OH)(2)NPA进行热处理2 h,获得FCF上的Co3O4 NPA。从形态和晶体性质的分析来看,Co3O4 NPA很好地集成在一起,并均匀地覆盖在整个基质表面,立方相具有良好的结晶度。此外,将制成的样品直接用作无粘合剂的电极,以在1 M KOH电解质溶液中使用循环伏安法和电充放电测量来检查电化学超级电容器的可行性。 Co3O4 NPAs涂覆的FCFs电极在1 A / g的电流密度下显示出145.6 Fig的最大比电容,在3 A / g的电流密度下经过1000次循环后表现出出色的倍率能力。这种将Co3O4纳米结构集成在FCF上的简便制造方法对于先进的柔性电子和能量存储设备应用而言可能是一种有前途的方法。 (C)2015 Elsevier B.V.保留所有权利。

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