Abstract
In this study, the electronic structure of V-doped ZnO system is studied by means of density functional theory. Different concentrations of V and rising of Fermi level increase the relative occupation of majority/minority spin of 3d state and also induce strong spin-splitting. The existence of three different states of V spin moment has been confirmed and is found to be concentration dependent. We found that O p-orbitals are responsible for the origin of the magnetic moment. Ruderman-Kittel-Kasuya-Yosida mechanism and the atomic spin polarization of V are the key factors for the appearance of ferromagnetism in V-doped ZnO system. The synthesized nanoparticles exhibit hexagonal wurtzite crystal structure, where both crystallite size and lattice parameters vary with V content. Magnetic measurements at room temperature confirm the ferromagnetic behaviour of V-doped ZnO system.
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Mamouni, N., Vijaya, J. J., Benyoussef, A., El Kenz, A., & Bououdina, M. (2018). Electronic structure and magnetic studies of V-doped ZnO: Ab initio and experimental investigations. Bulletin of Materials Science, 41(3). https://doi.org/10.1007/s12034-018-1585-3
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