Nanoscale analysis of Ru(0001) oxidation using low-energy and photoemission electron microscopy

CO oxidation over oxygen-rich Ru(0001) surfaces is one of the most studied catalytic oxidation reactions in surface science and of widespread interest as a model system for the redox chemistry of transition metal model catalysts. Here, we present an extensive low-energy electron microscopy (LEEM) an...

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Veröffentlicht in:Journal of physics. Condensed matter 2009-08, Vol.21 (31), p.314018-314018 (6)
Hauptverfasser: Flege, J I, Sutter, P
Format: Artikel
Sprache:eng
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Zusammenfassung:CO oxidation over oxygen-rich Ru(0001) surfaces is one of the most studied catalytic oxidation reactions in surface science and of widespread interest as a model system for the redox chemistry of transition metal model catalysts. Here, we present an extensive low-energy electron microscopy (LEEM) and photoemission electron microscopy study of the oxidation of Ru(0001), which constitutes a crucial step in understanding the overall surface reaction. After characterizing the different surface nanoscale morphologies observed depending on the oxidation temperature, three distinct oxygen-rich phases are identified by dark-field microscopy and local valence-band spectroscopy. Furthermore, in situ LEEM allows us to follow the growth of single rutile oxide nuclei in real time and determine the relevant activation barriers that induce quasi-one-dimensional growth of oxide nanorods, whose growth rate is limited by O incorporation.
ISSN:0953-8984
1361-648X
DOI:10.1088/0953-8984/21/31/314018