Sensing electrode inhomogeneity and electrochemical heterogeneity using an electrochemically integrated multielectrode array

This paper provides a brief review of the wire beam electrode WBE and its applications in measuring, characterizing, and evaluating surface inhomogeneity and electrochemical heterogeneity. The WBE is a unique multielectrode array that is electrochemically integrated by coupling all electrode termina...

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Main Author: Tan, Yong-jun
Format: Journal Article
Published: The Electrochemical Society ECS 2009
Online Access:http://hdl.handle.net/20.500.11937/14562
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author Tan, Yong-jun
author_facet Tan, Yong-jun
author_sort Tan, Yong-jun
building Curtin Institutional Repository
collection Online Access
description This paper provides a brief review of the wire beam electrode WBE and its applications in measuring, characterizing, and evaluating surface inhomogeneity and electrochemical heterogeneity. The WBE is a unique multielectrode array that is electrochemically integrated by coupling all electrode terminals together and by closely packing all electrodes. A WBE surface typically consists of 100 nominally identical and individually addressable electrodes that effectively mimic a conventional single electrode in electrochemical behavior. Pre-existing surface inhomogeneity can be analyzed by detecting electrochemical parameters from various locations over a WBE surface. Electrochemical integration of the WBE working surface permits electrochemical heterogeneity to evolve dynamically and propagate freely. Typical experiments are presented to illustrate the applications of the WBE indetecting electrode inhomogeneity, in sensing localized corrosion, in measuring electroplating, and in monitoring anodic dissolution and polymerization.
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publishDate 2009
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spelling curtin-20.500.11937-145622017-09-13T16:02:00Z Sensing electrode inhomogeneity and electrochemical heterogeneity using an electrochemically integrated multielectrode array Tan, Yong-jun This paper provides a brief review of the wire beam electrode WBE and its applications in measuring, characterizing, and evaluating surface inhomogeneity and electrochemical heterogeneity. The WBE is a unique multielectrode array that is electrochemically integrated by coupling all electrode terminals together and by closely packing all electrodes. A WBE surface typically consists of 100 nominally identical and individually addressable electrodes that effectively mimic a conventional single electrode in electrochemical behavior. Pre-existing surface inhomogeneity can be analyzed by detecting electrochemical parameters from various locations over a WBE surface. Electrochemical integration of the WBE working surface permits electrochemical heterogeneity to evolve dynamically and propagate freely. Typical experiments are presented to illustrate the applications of the WBE indetecting electrode inhomogeneity, in sensing localized corrosion, in measuring electroplating, and in monitoring anodic dissolution and polymerization. 2009 Journal Article http://hdl.handle.net/20.500.11937/14562 10.1149/1.3098477 The Electrochemical Society ECS restricted
spellingShingle Tan, Yong-jun
Sensing electrode inhomogeneity and electrochemical heterogeneity using an electrochemically integrated multielectrode array
title Sensing electrode inhomogeneity and electrochemical heterogeneity using an electrochemically integrated multielectrode array
title_full Sensing electrode inhomogeneity and electrochemical heterogeneity using an electrochemically integrated multielectrode array
title_fullStr Sensing electrode inhomogeneity and electrochemical heterogeneity using an electrochemically integrated multielectrode array
title_full_unstemmed Sensing electrode inhomogeneity and electrochemical heterogeneity using an electrochemically integrated multielectrode array
title_short Sensing electrode inhomogeneity and electrochemical heterogeneity using an electrochemically integrated multielectrode array
title_sort sensing electrode inhomogeneity and electrochemical heterogeneity using an electrochemically integrated multielectrode array
url http://hdl.handle.net/20.500.11937/14562