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Synthesis Magnetic Anisotropy and Optical Properties of Preferred Oriented Zinc Ferrite Nanowire Arrays

机译:择优取向锌铁氧体纳米线阵列的合成磁各向异性和光学性质

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摘要

Preferred oriented ZnFe2O4 nanowire arrays with an average diameter of 16 nm were fabricated by post-annealing of ZnFe2 nanowires within anodic aluminum oxide templates in atmosphere. Selected area electron diffraction and X-ray diffraction exhibit that the nanowires are in cubic spinel-type structure with a [110] preferred crystallite orientation. Magnetic measurement indicates that the as-prepared ZnFe2O4 nanowire arrays reveal uniaxial magnetic anisotropy, and the easy magnetization direction is parallel to the axis of nanowire. The optical properties show the ZnFe2O4 nanowire arrays give out 370–520 nm blue-violet light, and their UV absorption edge is around 700 nm. The estimated values of direct and indirect band gaps for the nanowires are 2.23 and 1.73 eV, respectively.
机译:通过在大气中的阳极氧化铝模板内对ZnFe2纳米线进行后退火,制造了平均直径为16 nm的优选取向ZnFe2O4纳米线阵列。选定区域的电子衍射和X射线衍射表明纳米线为立方晶尖晶石型结构,具有[110]首选的微晶取向。磁测量表明,所制备的ZnFe2O4纳米线阵列具有单轴磁各向异性,易磁化方向平行于纳米线的轴。光学性能表明,ZnFe2O4纳米线阵列发出370-520 nm的蓝紫色光,其紫外线吸收边缘约为700 nm。纳米线的直接和间接带隙的估计值分别为2.23和1.73 eV。

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