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Impact of Surface on the $d^{0}$ Ferromagnetism of Lithium-Doped Zinc Oxide Nanowires

机译:表面对掺锂氧化锌纳米线的$ d ^ {0} $铁磁性的影响

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We present a first-principles study on the impacts of the surface on the ferromagnetism (FM) induced by non-magnetic defects (lithium substitutional dopants at zinc sites ${rm Li}_{rm Zn}$ and zinc vacancies $V_{rm Zn}$ ) of zinc oxide (ZnO) nanowires. We show that unlike bulk ZnO structures, both ${rm Li}_{rm Zn}$ and $V_{rm Zn}$ are able to induce $d^{0}$ FM in ZnO nanowires. While the structural confinement at the nanowire surface is found to play a key role in the FM induced by ${rm Li}_{rm Zn}$ , the reconstruction of the surface tunes the defect-induced FM. By suppressing the surface reconstruction, we find that a ${rm Li}_{rm Zn}$ and a $V_{rm Zn}$ , regardless of their position, induce the same magnetic moments of 0.71 and 2.00 $mu_{rm B}$ ( $mu_{rm B}$ is the magneton Bohr), respectively. The steady correlation between the defect-induced FM, the dangling bonds introduced at these defects, and the local structural reconstruction surrounding these defects is unveiled. Finally, we discuss the saturation of the magnetic moment as the defect density increases.
机译:我们提出了关于非磁性缺陷(锌位$ {rm Li} _ {rm Zn} $和锌空位$ V_ {rm的锂替代掺杂剂)引起的表面对铁磁性(FM)的影响的第一性原理研究。氧化锌(ZnO)纳米线的Zn} $。我们表明,与块状ZnO结构不同,$ {rm Li} _ {rm Zn} $和$ V_ {rm Zn} $都能够在ZnO纳米线中诱发$ d ^ {0} $ FM。虽然发现纳米线表面的结构限制在由$ {rm Li} _ {rm Zn} $引起的FM中起关键作用,但表面的重建可调节由缺陷引起的FM。通过抑制表面重构,我们发现$ {rm Li} _ {rm Zn} $和$ V_ {rm Zn} $不论它们处于什么位置,都感应出相同的磁矩0.71和2.00 $ mu_ {rm B } $($ mu_ {rm B} $是Bohr的磁子)。揭示了缺陷诱发的FM,在这些缺陷处引入的悬空键以及围绕这些缺陷的局部结构重建之间的稳定相关性。最后,我们讨论了磁矩在缺陷密度增加时的饱和度。

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