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Orientation-induced enhancement in electromagnetic properties of ZnFe2O4/SiO2/PANI core/shell/shell nanostructured disks

机译:定向诱导的ZnFe2O4 / SiO2 / PANI核/壳/壳纳米结构磁盘的电磁性能增强

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ZnFe2O4/SiO2/PANI (ZSP) core/shell/shell nanostructured disks are prepared and fabricated into paraffin-bonded ZSP composite rings with random, vertical, and horizontal orientations of the easy magnetization planes of the ZSP disks in the paraffin binder in order to study the effect of directional orientation of the easy magnetization planes on their electromagnetic properties. The easy magnetization planes induced by shape anisotropy and oriented by a magnetic field in the vertically oriented ring result in a general enhancement in permeability of 7–60% in the broad UHF–Ku (0.1–18 GHz) bands, while those in the horizontally oriented ring lead to a significant enhancement of 58–1100% in the low-frequency L and S (1–4 GHz) bands, in comparison with the randomly oriented ring. The observed permeability agrees with the theoretical prediction based on the Landau–Lifshitz–Gilbert equation and the Bruggeman’s effective medium theory. The horizontal and vertical arrangements of dipolar polarizations in the vertically and horizontally oriented rings give rise to 3–11% enhancement and weakening in permittivity, respectively, compared to the randomly oriented ring. The enhancement in permeability also improves and broadens the electromagnetic wave absorption in both vertically and horizontally oriented rings, especially in the L and S bands for the horizontally oriented ring.
机译:制备ZnFe2O4 / SiO2 / PANI(ZSP)核/壳/壳纳米结构盘并将其制成石蜡键合的ZSP复合环,使石蜡粘合剂中ZSP盘的易磁化平面具有随机,垂直和水平方向,以便研究易磁化平面的方向取向对其电磁特性的影响。在垂直方向的环中,由形状各向异性引起并由磁场定向的易磁化平面导致宽UHF-Ku(0.1-18 GHz)频段的磁导率总体提高7-60%,而水平方向的磁导率则提高与随机定向的环相比,定向环会导致低频L和S(1-4 GHz)频段显着提高58–1100%。观测到的渗透率与基于Landau–Lifshitz–Gilbert方程和Bruggeman有效介质理论的理论预测相符。与随机取向的环相比,垂直和水平取向的环中偶极极化的水平和垂直排列分别使介电常数提高3-11%。磁导率的提高还改善和拓宽了垂直和水平方向的环中的电磁波吸收,尤其是在水平方向的环的L和S波段中。

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