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Signatures of consolidated superparamagnetic and spin-glass behavior in magnetite-silver core-shell nanoparticles

机译:签名统一超顺磁的和自旋玻璃行为magnetite-silver核壳纳米粒子

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A detailed investigation of magnetization relaxation for silver-coated magnetite nanostructures with three different types of magnetic behavior in a single particle is presented. Magnetite nanoparticles of diameter approximate to 6.5 nm synthesized via single-phase emulsion were further coated with a silver shell of thickness approximate to 2 nm. The synthesized nanoparticles are found to be efficiently photoluminescent. The coating of silver generates a magnetically disordered spin layer at the interface of the magnetic core and the non-magnetic shell. This intermediate layer plays a significant role in the dynamical magnetic response of nanoparticles under an external magnetic field. We present detailed magnetic measurements such as field- and temperature-dependent dc magnetization with zero-field-cooled and field-cooled protocols, ac susceptibility and time decay of magnetization relaxation along with their analysis using various formalisms viz. Neel-Arrhenius, Vogel-Fulcher and power law models. The relaxation analysis suggests the consolidated presence of two characteristic relaxation times corresponding to the superparamagnetic and spin-glass behavior of silver-coated magnetite nanoparticles.
机译:磁化的详细调查放松对镀银磁铁矿用三种不同类型的纳米结构磁行为在一个粒子提出了。近似为6.5纳米的合成单相进一步涂上乳液近似为2纳米银壳的厚度。合成纳米粒子被发现有效地发光。银生成一个磁无序自旋层界面的磁芯非磁性壳。在动态中起着重要作用磁性纳米粒子的反应在一个外部磁场。和磁测量等领域随温度而变的直流磁化与zero-field-cooled和field-cooled协议,交流磁化的磁化率和时间衰变放松连同他们的分析使用各种形式即Neel-Arrhenius,Vogel-Fulcher和幂律模型。放松分析显示合并两个特征松弛时间超顺磁的对应自旋玻璃镀银磁铁矿的行为纳米粒子。

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