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首页> 外文期刊>Electrochimica Acta >One-step electrochemical preparation of graphene-coated pencil graphite electrodes by cyclic voltammetry and their application in vanadium redox batteries
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One-step electrochemical preparation of graphene-coated pencil graphite electrodes by cyclic voltammetry and their application in vanadium redox batteries

机译:循环伏安法通过循环伏安法制备石墨烯涂层铅笔石墨电极的一步电化学制备及其在钒氧化钇电池中的应用

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摘要

In this study, a novel technique was investigated for the one-step production of graphene layers on a pencil graphite electrode. To the best of our knowledge, this report is the first to describe the formation of graphene layers on a graphite electrode using cyclic voltammetry in 5.0 M nitric acid solution. The oxidation of the pencil graphite electrode occurred at the anode. Next, the formed graphene oxide was reduced to graphene over one cycle. The electrochemical characteristics and behaviors of the produced graphene electrodes were investigated by cyclic voltammetry. Physical and morphological characteristics and differences in the electrodes were determined by Raman, XPS and SEM analysis. The graphene electrodes were used as the positive electrode component of a vanadium redox battery. GPGE (the graphene electrode synthesized over 50 cycles in 5 M HNO3) had the best performance as a positive electrode in a vanadium redox battery. Moreover, GPGE exhibited great cyclic performance and excellent cycling stability (more than 200 cycles) in cyclic voltammetry. It has been demonstrated that the presented novel processing route is fast, easy, cheap and environmentally friendly for preparation of graphene electrodes which can be used in energy storage systems, sensors, and optoelectronics. (c) 2017 Elsevier Ltd. All rights reserved.
机译:在该研究中,研究了一种新的技术在铅笔石墨电极上的石墨烯层的一步生产。据我们所知,本报告是第一个在5.0M硝酸溶液中使用循环伏安法描述石墨电极上的石墨烯层的形成。铅笔石墨电极的氧化在阳极处发生。接下来,在一个循环上将形成的石墨烯氧化物还原成石墨烯。通过循环伏安法研究了所生产的石墨烯电极的电化学特性和行为。通过拉曼,XPS和SEM分析测定电极的物理和形态特征和差异。将石墨烯电极用作钒氧化还原电池的正极组分。 GPGE(在5M HNO3中超过50个循环的石墨烯电极)具有作为钒氧化还原电池中的正极的最佳性能。此外,GPGE在循环伏安法中表现出极高的循环性能和优异的循环稳定性(超过200个循环)。已经证明,呈现的新型加工途径快速,容易,便宜,环保,用于制备石墨烯电极,其可用于储能系统,传感器和光电子。 (c)2017 Elsevier Ltd.保留所有权利。

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