Synthesis, magnetic anisotropy and optical properties of preferred oriented zinc ferrite nanowire arrays

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Abstract

Preferred oriented ZnFe 2O 4 nanowire arrays with an average diameter of 16 nm were fabricated by post-annealing of ZnFe 2 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 ZnFe 2O 4 nanowire arrays reveal uniaxial magnetic anisotropy, and the easy magnetization direction is parallel to the axis of nanowire. The optical properties show the ZnFe 2O 4 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. © 2010 The Author(s).

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Gao, D., Shi, Z., Xu, Y., Zhang, J., Yang, G., Zhang, J., … Xue, D. (2010). Synthesis, magnetic anisotropy and optical properties of preferred oriented zinc ferrite nanowire arrays. Nanoscale Research Letters, 5(8), 1289–1294. https://doi.org/10.1007/s11671-010-9640-z

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