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Substrate Selection for Fundamental Studies of Electrocatalysts and Photoelectrodes: Inert Potential Windows in Acidic, Neutral, and Basic Electrolyte

机译:电催化剂和光电极基础研究的基质选择:酸性,中性和碱性电解质中的惰性电势窗口

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摘要

The selection of an appropriate substrate is an important initial step for many studies of electrochemically active materials. In order to help researchers with the substrate selection process, we employ a consistent experimental methodology to evaluate the electrochemical reactivity and stability of seven potential substrate materials for electrocatalyst and photoelectrode evaluation. Using cyclic voltammetry with a progressively increased scan range, we characterize three transparent conducting oxides (indium tin oxide, fluorine-doped tin oxide, and aluminum-doped zinc oxide) and four opaque conductors (gold, stainless steel 304, glassy carbon, and highly oriented pyrolytic graphite) in three different electrolytes (sulfuric acid, sodium acetate, and sodium hydroxide). We determine the inert potential window for each substrate/electrolyte combination and make recommendations about which materials may be most suitable for application under different experimental conditions. Furthermore, the testing methodology provides a framework for other researchers to evaluate and report the baseline activity of other substrates of interest to the broader community.
机译:对于许多电化学活性材料的研究,选择合适的基材是重要的初始步骤。为了帮助研究人员进行底物选择过程,我们采用一致的实验方法来评估七种潜在底物材料的电化学反应性和稳定性,以用于电催化剂和光电极评估。使用循环伏安法并逐步增加扫描范围,我们可以表征三种透明的导电氧化物(铟锡氧化物,氟掺杂的锡氧化物和铝掺杂的氧化锌)和四种不透明的导体(金,不锈钢304,玻璃碳和高度透明的导体)。取向的热解石墨)在三种不同的电解质(硫酸,乙酸钠和氢氧化钠)中。我们确定每种底物/电解质组合的惰性电势窗口,并就哪些材料最适合在不同实验条件下使用提出建议。此外,测试方法为其他研究人员提供了一个框架,以评估和向更广泛的社区报告其他感兴趣的底物的基线活性。

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