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Electrochemical impedance studies of IrO2 catalysts for oxygen evolution

机译:用于析氧的IrO2催化剂的电化学阻抗研究

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IrO2 electrodes used as oxygen evolving anodes were studied by electrochemical impedance spectroscopy (EIS) to establish criteria for the assessment of their electroactive surface area and their intrinsic catalytic activity. Two types of IrO2-coated electrodes were used: anodically grown oxides on an It substrate and commercially available IrO2 nanoparticles, dispersed in a Nafion (R) polymer electrolyte layer on a glassy carbon substrate. EIS data indicate that both formulations behave as porous electrodes and their response can be described by variants of the classic transmission line model both at potentials outside and within the oxygen evolution reaction (OER) potential range; however, in the latter case, useful parameters could also be obtained by the use of common Randles models. An alternative approach to obtain capacitance values (free from the assumptions and geometric formulations of a model) has been based on plots of -1/(omega Z(Im)) vs. Z(re) that acquire or approach a limiting total capacitance value C-t at low or intermediate frequencies; the latter scales well with the charge associated with IrO2 surface electrochemistry and with oxide layer thickness or oxide particle loading. C-t can be taken as a measure of the catalyst electroactive surface area and the product RctCt (where R-ct is the OER charge transfer/polarization resistance) as the appropriate parameter to characterise the catalyst intrinsic catalytic activity. C-t can also be used to correct direct current vs. electrode potential OER data for electroactive surface area effects. (C) 2015 Elsevier B.V. All rights reserved.
机译:通过电化学阻抗谱(EIS)研究了用作氧气释放阳极的IrO2电极,以建立评估其电活性表面积和其固有催化活性的标准。使用两种类型的涂有IrO2的电极:在It基板上阳极生长的氧化物和可商购的IrO2纳米粒子,它们分散在玻璃碳基板上的Nafion(R)聚合物电解质层中。 EIS数据表明,这两种配方均表现为多孔电极,并且可以通过经典传输线模型在氧气析出反应(OER)电位范围之外和之内的电位来描述其响应。但是,在后一种情况下,也可以通过使用通用Randles模型获得有用的参数。获得电容值(不考虑模型的假设和几何公式)的另一种方法是基于-1 /(ωZ(Im))与Z(re)的关系图,该图可获取或接近极限总电容值低频或中频Ct;后者与与IrO2表面电化学相关的电荷以及与氧化物层的厚度或氧化物颗粒的负载量成比例。可以将C-t用作催化剂电活性表面积的量度,并将乘积RctCt(其中R-ct是OER电荷转移/极化电阻)作为表征催化剂固有催化活性的合适参数。 C-t还可用于校正直流电对电极电势的OER数据,以获得电活性表面积效应。 (C)2015 Elsevier B.V.保留所有权利。

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