An insight into alkali promotion: a density functional theory study of CO dissociation on K/Rh(111)


Autoria(s): Liu, Zhi-Pan; Hu, P
Data(s)

01/11/2001

Resumo

<p>The important role of alkali additives in heterogeneous catalysis is, to a large extent, related to the high promotion effect they have on many fundamental reactions. The wide application of alkali additives in industry does not, however, reflect a thorough understanding of the mechanism of their promotional abilities. To investigate the physical origin of the alkali promotion effect, we have studied CO dissociation on clean Rh(111) and K-covered Rh(111) surfaces using density functional theory. By varying the position of potassium atoms relative to a dissociating CO, we have mapped out the importance of different K effects on the CO dissociation reactions. The K-induced changes in the reaction pathways and reaction barriers have been determined; in particular, a large reduction of the CO dissociation barrier has been identified. A thorough analysis of this promotion effect allows us to rationalize both the electronic and the geometrical factors that govern alkali promotion effect: (i) The extent of barrier reductions depends strongly on how close K is to the dissociating CO. (ii) Direct K-O bonding that is in a very short range plays a crucial role in reducing the barrier. (iii) K can have a rather long-range effect on the TS structure, which could reduce slightly the barriers.</p>

Identificador

https://pure.qub.ac.uk/portal/en/publications/an-insight-into-alkali-promotion-a-density-functional-theory-study-of-co-dissociation-on-krh111(c045ea50-200f-4539-b26c-3c411b1e580d).html

https://doi.org/10.1021/ja011446y

Idioma(s)

eng

Direitos

info:eu-repo/semantics/restrictedAccess

Fonte

Liu , Z-P & Hu , P 2001 , ' An insight into alkali promotion: a density functional theory study of CO dissociation on K/Rh(111) ' , Journal of the American Chemical Society , vol. 123 , no. 50 , pp. 12596-12604 . https://doi.org/10.1021/ja011446y

Palavras-Chave #/dk/atira/pure/subjectarea/asjc/1600 #Chemistry(all)
Tipo

article