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EIS Studies of Porous Oxygen Electrodes with Discrete Particles — Chad C. Waraksa (2003) | RDL Network
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EIS Studies of Porous Oxygen Electrodes with Discrete Particles
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Digby D Macdonald
University of California, Berkeley
EIS Studies of Porous Oxygen Electrodes with Discrete Particles
Article
2003
en
Authors
+1 more
CW
Chad C. Waraksa
GC
Guoying Chen
Digby D Macdonald
University of California, Berkeley
Abstract
1 min read
Porous electrodes provide high-surface-area supports for the catalysts of many reactions, but the influences of electrode preparation conditions on electrocatalysts are not always well understood. Electrochemical impedance spectroscopy (EIS) can provide extensive information about an electrode, but the models describing the spectra are often too idealized to draw useful conclusions. We describe a new model based on an array of parallel, nonuniform transmission lines for predicting the response of porous electrodes. The model incorporates physically realistic elements, such as discrete particles of variable size and adjustable multilayer stacking geometries. Resistance parameters were derived from experimental data for -coated and Ebonex electrodes prepared under varying degrees of oxidative conditioning. The results, which indicate a high degree of impedance at the support-solution interface and consequently, low catalyst utilization, suggest several strategies for improved electrode design. © 2003 The Electrochemical Society. All rights reserved.
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