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research
Spectromicroscopy of pulses transporting alkali metal in a surface reaction
Authors
S. Günther
R. Imbihl
+3 more
H. Liu
A. Locatelli
T.O. Menteş
Publication date
1 January 2013
Publisher
Cambridge : Royal Society of Chemistry
Doi
Cite
Abstract
The NO + H2 reaction on a potassium promoted Rh(110) surface is shown to sustain the formation of spatio-temporal periodic patterns leading to mass transport phenomena. The excitation of pulses and the mass transport mechanism are studied in the 10-7 and 10-6 mbar pressure range, with the potassium coverage varying between K = 0.05 and K = 0.12 ML. Using spectroscopic photoemission and spectroscopic low energy electron microscopy (SPELEEM) as well as related microprobe diffraction techniques, we show that the excitation mechanism comprises a cyclic structural transformation: K + O-coadsorbate → (2 × 1)-N → c(2 × 4)-2O,N → K + O coadsorbate. Laterally resolved spectroscopy demonstrates that potassium is accumulated in front of the nitrogen pulses, suggesting that adsorbed nitrogen acts as a diffusion barrier for potassium. © 2013 The Owner Societies
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Institutionelles Repositorium der Leibniz Universität Hannover
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Last time updated on 21/11/2017
Crossref
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info:doi/10.1039%2Fc3cp44478c
Last time updated on 01/04/2019