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首页> 外文期刊>Physica, B. Condensed Matter >Magnetic behavior of chemically synthesized FePt–FeRh nanostructures
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Magnetic behavior of chemically synthesized FePt–FeRh nanostructures

机译:化学合成的FePt–FeRh纳米结构的磁行为

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We describe here the chemical synthesis and magnetization behavior of FeRh–FePt nanostructures fabricated using a two-step procedure. The first step involved chemical synthesis of FeRh nanoparticles using a polyol co-reduction process accompanied by the second stage of encapsulation of FeRh nanoparticles with FePt. The FeRh–FePt nanoparticles were subsequently annealed in a salt matrix at 600 1C for 3 h. Magnetic measurements were made on films of FeRh–FePt nanostructures cast onto silicon wafers before and after the salt matrix annealing. The coercivity of as-synthesized FeRh–FePt nanostructures was ~70 Oe at room temperature, while the coercivity of salt-matrix annealed FeRh– FePt nanoparticles was ~7065 Oe. The temperature dependent magnetization measurement of annealed FeRh–FePt nanostructures indicated antiferromagnetic–ferromagnetic transition that is supported by X-ray diffraction study. The observations point toward the potential realization of FeRh–FePt nanostructures for ultra-high density magnetic recording media.
机译:我们在这里描述使用两步法制造的FeRh-FePt纳米结构的化学合成和磁化行为。第一步涉及使用多元醇共还原工艺化学合成FeRh纳米颗粒,第二步是用FePt包裹FeRh纳米颗粒。随后将FeRh-FePt纳米粒子在盐基中于600 1C退火3小时。在盐基质退火之前和之后,对浇铸在硅片上的FeRh-FePt纳米结构薄膜进行磁性测量。合成后的FeRh–FePt纳米结构在室温下的矫顽力为〜70 Oe,而盐基退火的FeRh–FePt纳米颗粒的矫顽力为〜7065 Oe。退火的FeRh-FePt纳米结构的温度依赖性磁化测量表明,X射线衍射研究支持了反铁磁-铁磁转变。观察结果表明,超高密度磁记录介质可以实现FeRh-FePt纳米结构。

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