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Electronic structure and magnetism of transition metal doped Zn(12)O(12) clusters: Role of defects

机译:过渡金属掺杂的Zn(12)O(12)团簇的电子结构和磁性:缺陷的作用

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摘要

We present a comprehensive study of the energetics and magnetic properties of ZnO clusters doped with 3d transition metals (TMs) using ab initio density functional calculations in the framework of generalized gradient approximation + Hubbard U (GGA+U) method. Our results within GGA+U for all 3d dopants except Ti indicate that antiferromagnetic interaction dominates in a neutral, defect-free cluster. Formation energies are calculated to identify the stable defects in the ZnO cluster. We have analyzed in details the role of these defects to stabilize ferromagnetism when the cluster is doped with Mn, Fe, and Co. Our calculations reveal that in the presence of charged defects the TM atoms residing at the surface of the cluster may have an unusual oxidation state, that plays an important role to render the cluster ferromagnetic. Defect induced magnetism in ZnO clusters without any TM dopants is also analyzed. These results on ZnO clusters may have significant contributions in the nanoengineering of defects to achieve desired ferromagnetic properties for spintronic applications. (C) 2010 [doi: 10.1063/1.3525649]
机译:我们在广义梯度近似+ Hubbard U(GGA + U)方法的框架内,使用从头算密度函数计算,对掺杂3d过渡金属(TMs)的ZnO团簇的能量和磁性能进行了全面研究。我们在GGA + U中针对除Ti以外的所有3d掺杂剂的结果表明,反铁磁相互作用在中性,无缺陷的簇中占主导地位。计算形成能以识别ZnO团簇中的稳定缺陷。我们已经详细分析了当簇中掺有Mn,Fe和Co时这些缺陷对稳定铁磁性的作用。我们的计算表明,在存在带电缺陷的情况下,存在于簇表面的TM原子可能具有异常氧化态,在使团簇具有铁磁性方面起着重要作用。还分析了不含任何TM掺杂剂的ZnO簇中的缺陷感应磁。 ZnO团簇上的这些结果可能对缺陷的纳米工程化具有重大贡献,以实现自旋电子学应用所需的铁磁性能。 (C)2010 [doi:10.1063 / 1.3525649]

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