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One-Step Synthesis of Mesoporous Chlorine-Doped Carbonated Cobalt Hydroxide Nanowires for High-Performance Supercapacitors Electrode

机译:高性能超级电容器电极氢氧化碳酸钴碳酸钴碳酸钴的一步合成

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摘要

Abstract Self-stabilized and well-defined chlorine-doped carbonated cobalt hydroxide nanowires have been obtained as a binder-free electrode via a facile method. The Co material has a unique well-defined needle-like structure, composed of highly aligned monomer with the diameter of about 3–10 nm and numerous surface pores, which makes it have potential for high-performance electrochemical capacitors. The test results show the directly acquired Co-ClNWs(NiE) electrode in three-electrode system can reach the specific capacity of more than 2150 F/g under the current density of 1 A/g, accompanied by a good cycling stability of 94.3% capacitance retention after 500 cycles, and exhibits a high energy density of 41.8 W h/kg at the power density of 1280.7 W/kg when using it as the positive electrode of an asymmetric supercapacitor. After making a comparison of the current material with the conventional electrodes, we can find that a better electrochemical performance can be achieved with a more convenient one-step method. Therefore, we, in this work, may provide a new type of manufacturing concept for future electrode treatment.
机译:摘要通过容易法得到自稳定和氯掺杂的碳酸钴碳酸钴纳米线。 CO材料具有独特的明确定义的针状结构,由高度对准的单体组成,该单体具有约3-10nm的直径和许多表面孔,这使得它具有高性能电化学电容器的潜力。测试结果表明,在电流密度为1 a / g的电流密度下,三电极系统中的直接获取的CO-CLNWS(NIE)电极可以达到2150 f / g的特定容量,伴随着94.3%的良好循环稳定性500次循环后的电容保持,并且在使用其作为不对称超级电容器的正电极时,在1280.7W / kg的功率密度下表现出41.8Wh / kg的高能量密度。在使用传统电极进行当前材料的比较之后,我们可以发现可以通过更方便的一步法实现更好的电化学性能。因此,在这项工作中,我们可以为未来电极处理提供一种新型的制造理念。

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