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Original Articles

A possible model for corrosion pitting and tunneling in noble-metal alloys

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Pages 171-188 | Received 18 Jan 1980, Accepted 22 May 1980, Published online: 27 Sep 2006

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K. Sieradzki, R.R. Corderman, K. Shukla & R.C. Newman. (1989) Computer simulations of corrosion: Selective dissolution of binary alloys. Philosophical Magazine A 59:4, pages 713-746.
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David A. Scott. (1983) The deterioration of gold alloys and some aspects of their conservation. Studies in Conservation 28:4, pages 194-203.
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W. D. Richey. (1982) Recent advances in corrosion science. Studies in Conservation 27:sup1, pages 108-118.
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P. Durkin & A.J. Forty. (1982) Oxide formation during the selective dissolution of silver from silver-gold alloys in nitric acid. Philosophical Magazine A 45:1, pages 95-105.
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Yuanda Chen, Zehao Tan, Enping Wang, Jiewei Yin, Liuxuan Luo, Shuiyun Shen & Junliang Zhang. (2023) Progress and prospects of dealloying methods for energy-conversion electrocatalysis. Dalton Transactions 52:22, pages 7370-7382.
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Touraj Ghaznavi, Suraj Y. Persaud & Roger C. Newman. (2022) The Effect of Temperature on Dealloying Mechanisms in Molten Salt Corrosion. Journal of The Electrochemical Society 169:11, pages 111506.
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P. Zhou & K. Ogle. 2018. Encyclopedia of Interfacial Chemistry. Encyclopedia of Interfacial Chemistry 478 489 .
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P. Zhou, M.J. Hutchison, J.W. Erning, J.R. Scully & K. Ogle. (2017) An in situ kinetic study of brass dezincification and corrosion. Electrochimica Acta 229, pages 141-154.
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