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The mechanism of N2O formation via the (NO)2 dimer: a density functional theory study.
Burch, R; Daniells, S T; Hu, P.
Afiliação
  • Burch R; CenTACat, School of Chemistry, David Keir Building, Queen's University Belfast, Belfast, N. Ireland BT9 5AG, UK.
J Chem Phys ; 121(6): 2737-45, 2004 Aug 08.
Article em En | MEDLINE | ID: mdl-15281876
ABSTRACT
Catalytic formation of N(2)O via a (NO)(2) intermediate was studied employing density functional theory with generalized gradient approximations. Dimer formation was not favored on Pt(111), in agreement with previous reports. On Pt(211) a variety of dimer structures were studied, including trans-(NO)(2) and cis-(NO)(2) configurations. A possible pathway involving (NO)(2) formation at the terrace near to a Pt step is identified as the possible mechanism for low-temperature N(2)O formation. The dimer is stabilized by bond formation between one O atom of the dimer and two Pt step atoms. The overall mechanism has a low barrier of approximately 0.32 eV. The mechanism is also put into the context of the overall NO + H(2) reaction. A consideration of the step-wise hydrogenation of O(ads) from the step is also presented. Removal of O(ads) from the step is significantly different from O(ads) hydrogenation on Pt(111). The energetically favored structure at the transition state for OH(ads) formation has an activation energy of 0.63 eV. Further hydrogenation of OH(ads) has an activation energy of 0.80 eV.
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Base de dados: MEDLINE Idioma: En Ano de publicação: 2004 Tipo de documento: Article
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Base de dados: MEDLINE Idioma: En Ano de publicação: 2004 Tipo de documento: Article