Electronic structure and magnetic properties of hexagonal and cubic forms of aluminum nitride doped with sp impurities (B, C, O)


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A comparative study of the band structure and magnetic properties of the hexagonal and cubic modifications of aluminum nitride doped with boron, carbon, and oxygen in the nitrogen sublattice has been performed using the ab initio FLAPW-GGA method. Preliminary conclusions on the comparative chemical activity of these phases are drawn from estimates for the energies of substitution of nitrogen atoms by dopants. It has been shown that the doping with boron and nitrogen leads to transition of hexagonal AlN into a magnetic state with high spin polarization of near-Fermi electrons, but for cubic AlN, this effect is absent.

Sobre autores

V. Bannikov

Institute of Solid State Chemistry, Ural Branch

Autor responsável pela correspondência
Email: bannikov@ihim.uran.ru
Rússia, Ekaterinburg

V. Kudyakova

Ural Federal University

Email: bannikov@ihim.uran.ru
Rússia, Ekaterinburg

A. Elagin

Ural Federal University

Email: bannikov@ihim.uran.ru
Rússia, Ekaterinburg

M. Baranov

Ural Federal University

Email: bannikov@ihim.uran.ru
Rússia, Ekaterinburg

A. Beketov

Ural Federal University

Email: bannikov@ihim.uran.ru
Rússia, Ekaterinburg

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