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Owing to the novel crystal structure, ε-Co nanoparticles with an average diameter of 12 nm are synthesized and the microwave magnetic properties of the epoxy resin composite with 50voi% ε-Co particles are measured in the frequency range 0.1-7 GHz. The experimental resonance frequency (4.7 GHz) matches well with the values obtained by the theoretical calculation with the Kittel equation and fitting the experimental permeability dispersion curve via the Landan-Lifshitz equation. Hence the resonance peak is attributed to natural resonance mode. This work is believed to be beneficial for further understanding microwave applications of the novel ε-Co nanoparticles. 相似文献
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非晶Co-Pt合金纳米线有序阵列的制备及其磁学性质 总被引:1,自引:0,他引:1
通过直流电沉积方法,以多孔阳极氧化铝(AAO)为模板,在室温下成功制备出一维非晶态Co-Pt合金纳米线有序阵列. SEM和TEM分析表明:纳米线长度均约10 μm,直径35 nm;纳米线在阳极氧化铝模板孔内互相平行. XRD结果表明,制备的纳米线为非晶态结构,经过700 ℃退火处理后则转变为面心立方(FCC)多晶结构. 采用VSM(振动样品磁强计)对退火处理前后样品的矫顽力和剩磁比进行研究,结果表明:当外加磁场与纳米线平行时,非晶态Co-Pt合金纳米线的矫顽力高达1700 Oe,剩磁比为0.83,表现出明显的垂直磁各向异性;而退火处理则使其优秀的磁学性质消失. 退火前后不同的磁学性质源于其不同的微观结构. 非晶态的Co-Pt合金纳米线由于无磁晶各向异性竞争,进而使得由纳米线一维形态引起的形状各向异性起主导作用,使其显示了很好的垂直磁各向异性;而多晶样品由于磁晶各向异性与形状各向异性竞争,导致矫顽力和剩磁比迅速降低. 相似文献
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