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Please use this identifier to cite or link to this item: http://hdl.handle.net/1959.14/128228

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Title
Structural changes during oxidation of Au(110)
Related
Surface and interface analysis, Vol. 32, No. 1 (2001), p.240-244
DOI
10.1002/sia.1045
Publisher
John Wiley & Sons
Date
2001
Author/Creator
Hale, Penny
Author/Creator
Thurgate, Stephen
Author/Creator
Wilkie, Peter
Description
The gold(110) single crystal exhibits a (1 × 2) surface structure when clean, but when immersed in 0.01 M HClO4 under potential control the structure has been found to change. Throughout the double-layer region the structure remains as (1 × 2) but when the potential is increased above 0.9–1.0 V vs. Ag/AgCl (the pre-oxidation region) the surface structure changes to a centred rectangular structure. This structure forms reproducibly but has limited stability. After the initial oxidation, the structure prevails until 1.2–1.3 V, whereupon oxidation occurs on a larger scale and the surface structure becomes (1 × 1). These structures return to (1 × 2) after reduction of the oxide, proving that the structural changes are reversible. X-ray photoelectron spectroscopy of these regions has shown a difference in the chemical state of the oxygen. Adsorbed perchlorate ion is initially the only oxygen component but as the potential increases the peak shifts into the hydroxide region and finally splits into a hydroxide peak and a metal oxide peak. This study indicates a new way of looking at the structure and composition of the gold surface and provides insight into the nature of the interaction between the surface and the solution.
Description
5 page(s)
Subject Keyword
gold single crystal
Subject Keyword
electrochemistry
Subject Keyword
oxidation
Subject Keyword
UHV
Subject Keyword
XPS
Subject Keyword
LEED
Subject Keyword
cyclic voltammetry
Resource Type
journal article
Organisation
Macquarie University. Division of Information and Communication Sciences
Organisation
Macquarie University. Dept. of Physics

Identifier
http://hdl.handle.net/1959.14/128228
Identifier
ISSN:0142-2421
Identifier
mq-rm-2006010886
Language
eng
Reviewed
Reviewed
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Citation Format
E-mail Address
Subject
"Surface and interface analysis"
 
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