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Glassy carbon electrode activation - A way towards highly active, reproducible and stable electrode surface

机译:玻璃碳电极活化 - 朝向高活性,可再现和稳定的电极表面

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Glassy carbon (GC) is one of the most often used carbon materials in laboratory practice. Despite the fact that its electrocatalytic properties are largely surface-state dependent, a standardised procedure for its activation is lacking. This work presents a detailed, systematic investigation of aGC electrode pre-treatment based on potential cycling in a strongly alkaline environment within optimised potential limits. The surface composition was followed by X-ray photoelectron spectroscopy. This allowed determination of the overall elemental surface composition as well as identification of important surface functional groups. Electro-catalytic activity of the activated electrodes was tested by using Fe3+/2+, Fe(CN)(6)(3-/4-) and benzoquinone/hydroquinone couples. A combination of spectroscopic and electrochemical information made it possible to establish a correlation between the electrode's electrocatalytic activity and its surface composition and to identify optimal activation conditions which resulted in a highly active, reproducible and stable electrode surface. It can be concluded that, due to its relative simplicity and efficiency, the present method has the potential to become a standard procedure of GC electrode activation. (C) 2019 Elsevier Ltd. All rights reserved.
机译:玻璃碳(GC)是最经常使用的碳材料在实验室实践中的一个。尽管它的电催化性能在很大程度上是表面状态相关的,用于其激活的标准处理程序是缺乏。这项工作提出AGC的详细,系统的调查电极基于势循环在优化潜力范围内的强碱性环境预处理。表面组成,随后用X射线光电子能谱。这使整体的元素表面组成的确定以及重要的表面官能团的识别。被激活的电极的电催化活性通过使用期Fe3 + / 2 +,铁(CN)(6)(3- / 4-)和苯醌/氢醌耦合测试。的光谱和电化学信息的组合使得有可能以建立电极的电催化活性和其表面组成之间的相关性,并确定这导致一个高活性的,可重复的,稳定的电极表面最佳活化条件。由此可以得出结论的是,由于它的相对简单性和效率,本发明的方法有可能成为GC电极激活的标准程序的潜力。 (c)2019 Elsevier Ltd.保留所有权利。

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