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Cation adatom diffusion on the NiO(001) surface by molecular dynamics simulation

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Auteur
Karakasidis, T. E.; Papageorgiou, D. G.; Evangelakis, G. A.
Date
2001
DOI
10.1016/s0039-6028(01)01063-9
Sujet
molecular dynamics
diffusion and migration
surface diffusion
nickel
oxides
single crystal surfaces
adatom
ISOVALENT IMPURITY CATIONS
METAL-CERAMIC INTERFACES
ELECTRONIC-STRUCTURE
NICKEL-OXIDE
GRAIN-BOUNDARY
NIO
SEGREGATION
TEMPERATURE
LAYERS
FILMS
Chemistry, Physical
Physics, Condensed Matter
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Résumé
We present results concerning the diffusion of Ni2+ adatom on the (001) surface of NiO obtained by molecular dynamics simulations based on a rigid ion potential model. A wide temperature region was covered ranging from 0.29T(m) up to 0.85T(m), T-m being the melting point of the model system. Two possible adatom positions were found on the surface in accordance with static calculations. From the detailed analysis of the ionic trajectories it came out that the adatom diffuses on the surface via hopping and exchange mechanisms. Both processes exhibit Arrhenius behavior from where we deduced the corresponding migration energies. In addition, we found two distinct temperature regions reflecting different energetic requirements for hopping diffusion. This is due to the spontaneous creation of anionic adatom that combine with the cationic adatom at high temperatures. Moreover, we found that although the frequency rates for hopping and exchange are comparable, the exchange mechanisms participate to the diffusion coefficient more than the hopping process by as much as an order of magnitude at high temperatures. (C) 2001 Elsevier Science B.V. All rights reserved.
URI
http://hdl.handle.net/11615/28986
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