Publication | Open Access
Room-Temperature Ferromagnetism in Carbon-Doped ZnO
817
Citations
22
References
2007
Year
Materials ScienceMagnetismFerromagnetismZno EnvironmentEngineeringCarbon-based MaterialOxide ElectronicsRoom-temperature FerromagnetismApplied PhysicsQuantum MaterialsCondensed Matter PhysicsMagnetic PropertyMagnetic MaterialMagnetic MomentCarbon-doped Zno
We report ferromagnetism in carbon-doped ZnO. Our first-principles calculations based on density functional theory predicted a magnetic moment of 2.02 mu(B) per carbon when carbon substitutes oxygen in ZnO, and an ferromagnetic coupling among magnetic moments of the carbon dopants. The theoretical prediction was confirmed experimentally. C-doped ZnO films deposited by pulsed-laser deposition showed ferromagnetism with Curie temperatures higher than 400 K. The measured magnetic moment based on the content of carbide in the films [(1.5-3.0) mu(B) per carbon] was in agreement with the theoretical prediction. The magnetism is due to the Zn-C system in the ZnO environment.
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