Island Ripening via a Polymerization-Depolymerization Mechanism

In catalytic methanol oxidation on ultrathin vanadium oxide layers on Rh(111) (Θ_{V}≈0.2 monolayer equivalent) we observe a 2D ripening of the VO_{x} islands that is controlled by the catalytic reaction. Neighboring VO_{x} islands move under reaction conditions towards each other and coalesce. The m...

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Veröffentlicht in:Physical review letters 2015-09, Vol.115 (13), p.136102-136102, Article 136102
Hauptverfasser: Hesse, Martin, von Boehn, Bernhard, Locatelli, Andrea, Sala, Alessandro, Menteş, Tevfik O, Imbihl, Ronald
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Sprache:eng
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Zusammenfassung:In catalytic methanol oxidation on ultrathin vanadium oxide layers on Rh(111) (Θ_{V}≈0.2 monolayer equivalent) we observe a 2D ripening of the VO_{x} islands that is controlled by the catalytic reaction. Neighboring VO_{x} islands move under reaction conditions towards each other and coalesce. The motion and the coalescence of the islands are explained by a polymerization-depolymerization equilibrium that is sensitive to gradients in the adsorbate coverages.
ISSN:0031-9007
1079-7114
DOI:10.1103/PhysRevLett.115.136102