ORBITAL MIXING IN CO CHEMISORPTION ON TRANSITION-METAL SURFACES


Autoria(s): HU, P; KING, DA; LEE, MH; PAYNE, MC
Data(s)

17/11/1995

Resumo

<p>The chemisorption of CO on metal surfaces is widely accepted as a model for understanding chemical bonding between molecules and solid surfaces, but is nevertheless still a controversial subject. Ab initio total energy calculations using density functional theory with gradient corrections for CO chemisorption on an extended Pd{110} slab yield good agreement with experimental adsorption energies. Examination of the spatial distribution of individual Bloch states demonstrates that the conventional model for CO chemisorption involving charge donation from CO 5 sigma states to metal states and back-donation from metal states into CO 2 pi states is too simplistic, but the computational results provide direct insight into the chemical bonding within the framework of orbital mixing (or hybridisation). The results provide a sound basis for understanding the bonding between molecules and metal surfaces.</p>

Identificador

http://pure.qub.ac.uk/portal/en/publications/orbital-mixing-in-co-chemisorption-on-transitionmetal-surfaces(b68e5b61-6a69-4755-af18-8def2c44a0af).html

Idioma(s)

eng

Direitos

info:eu-repo/semantics/restrictedAccess

Fonte

HU , P , KING , D A , LEE , M H & PAYNE , M C 1995 , ' ORBITAL MIXING IN CO CHEMISORPTION ON TRANSITION-METAL SURFACES ' Chemical Physics Letters , vol 246 , no. 1-2 , pp. 73-78 .

Palavras-Chave #DENSITY-FUNCTIONAL THEORY #CARBON-MONOXIDE #MOLECULAR-DYNAMICS #RECONSTRUCTION #PD(111)
Tipo

article