Electronic structure and magnetic properties of substitutional transition-metal atoms in GaN nanotubes |
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Authors: | Zhang Min Shi Jun-Jie |
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Affiliation: | a College of Physics and Electron Information, Inner Mongolia Normal University, Inner Mongolia Key Laboratory for Physics and Chemistry of Functional Materials, Hohhot 010022, China;b State Key Laboratory for Mesoscopic Physics and Department of Physics, Peking University, Beijing 100871, China |
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Abstract: | The electronic structure and magnetic properties of the transition-metal (TM) atoms (Sc–Zn, Pt and Au) doped zigzag GaN single-walled nanotubes (NTs) are investigated using first-principles spin-polarized density functional calculations. Our results show that the bindings of all TM atoms are stable with the binding energy in the range of 6–16 eV. The Sc- and V-doped GaN NTs exhibit a nonmagnetic behavior. The GaN NTs doped with Ti, Mn, Ni, Cu and Pt are antiferromagnetic. On the contrary, the Cr-, Fe-, Co-, Zn- and Au-doped GaN NTs show the ferromagnetic characteristics. The Mn- and Co-doped GaN NTs induce the largest local moment of 4μB among these TM atoms. The local magnetic moment is dominated by the contribution from the substitutional TM atom and the N atoms bonded with it. |
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Keywords: | transition-metal atom doping electronic structure magnetic property spin-polarized density-functional calculation |
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