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首页> 外文期刊>Journal of Materials Science >Ferromagnetic anisotropy in scandium-doped AlN hierarchical nanostructures
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Ferromagnetic anisotropy in scandium-doped AlN hierarchical nanostructures

机译:钪掺杂AlN分层纳米结构中的铁磁性各向异性

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摘要

We experimentally fabricated uniformly distributed single-, double- and six-sided Sc-doped AlN (AlN:Sc) nanodendrites by a plasma-assisted direct current arc discharge method. The crystal structure, composition, morphological and microstructures were characterized, and the physical mechanisms governing the formation of AlN:Sc nanodendrites were examined. It was found that the morphology and the crystal orientation of the AlN nanodendrites can be controlled by tuning the N-2 pressure. The incorporation of Sc induces native point defects in AlN that contribute to the growth of hierarchical structures and affect the room-temperature photoluminescence. The AlN:Sc nanodendrites exhibit room-temperature anisotropic ferromagnetism, and this is strongly depend on the orientation of the nanodendrites. This work provides a facile strategy to fabricate complex hierarchical AlN:Sc nanostructures with manipulated magnetic properties which may find promising applications in spintronic nanodevices.
机译:通过等离子体辅助直流电弧放电方法,我们通过等离子体辅助直流电弧放电方法通过等离子体辅料,通过等离子体分布均匀分布的单,双和六侧SC掺杂的ALN(ALN:SC)纳秒。 表征了晶体结构,组合物,形态学和微观结构,研究了调节ALN:SC纳秒的形成的物理机制。 发现可以通过调节N-2压力来控制ALN纳米二进石的形态和晶体取向。 SC的掺入诱导ALN的本地点缺陷,其有助于分层结构的生长并影响室温光致发光。 ALN:SC纳秒显示室温各向异性铁磁性,这是强烈的依赖于纳米二德里特的方向。 这项工作提供了构建策略来制造复杂的分层ALN:SC纳米结构,其具有操纵磁性性能,其可以在闪光纳米型中找到有前途的应用。

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