First-principles study of the reconstruction and hydroxylation of the polar NiO(111) surface
β Scribed by Christina Ebensperger; Bernd Meyer
- Book ID
- 104541946
- Publisher
- John Wiley and Sons
- Year
- 2011
- Tongue
- English
- Weight
- 663 KB
- Volume
- 248
- Category
- Article
- ISSN
- 0370-1972
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β¦ Synopsis
Abstract
Densityβfunctional theory (DFT) calculations have been combined with a thermodynamic formalism to determine a phase diagram of lowestβenergy structures and compositions of the polar NiO(111) surface in equilibirum with oxygen, hydrogen, and water reservoirs at finite temperatures and pressures. Consistent with experiment we find that for a wide range of oxygen and hydrogen chemical potentials the surface is fully hydroxylated and shows a (1βΓβ1) periodicity. At higher temperatures and Hβpoor conditions water can be removed from the surface and the two (2βΓβ2) octopolar reconstructions become the thermodynamically most stable configurations. Other structures, which have been proposed on the basis of experimental data after highβtemperature annealing, have to be considered to be kinetically limited metastable phases. In Oβpoor conditions no reduced surface structures are found to be thermodynamically stable. However, in Oβrich environments and at low hydrogen chemical potential the surface can be oxidized by a partial removal of hydrogen or incorporation of additional oxygen. The structural motifs are closely related to the cadmium iodide structure of Ni(OH)~2~ and NiO~2~.
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