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Giant Magnetic Moment of Oxygen-Free CuNi Nanoparticles

机译:无氧CuNi纳米粒子的巨磁矩

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摘要

We prepared CuNi nanoparticles by using a newly developed technique, the so-called plasma melting technique inside an oxygen-free Ar inert gas atmosphere and studied the magnetic properties. The magnetization of these nanoparticles is enormously increased over the bulk value while the size of the particle is reduced. A weak ferromagnetic behavior is observed from the magnetic hysteresis. The giant magnetic moment, which is almost inversely linear in temperature, and the weak ferromagnetic behavior support the Langevin-type superparamagnetic nature of CuNi nanoparticles. In this case, uncompensated spins on the surfaces of the particles play an important role, even though it is not enough to explain such giant magnetic moment. These properties are related to the oxygen-free nanoparticles produced by using the plasma melting technique.
机译:我们通过使用新开发的技术(即在无氧Ar惰性气体气氛中的所谓等离子体熔化技术)制备了CuNi纳米颗粒,并研究了磁性。这些纳米粒子的磁化强度大大超过体积值,同时减小了粒子尺寸。从磁滞观察到弱的铁磁行为。巨大的磁矩在温度上几乎成反比线性,并且弱的铁磁行为支持了CuNi纳米粒子的Langevin型超顺磁性。在这种情况下,粒子表面上未补偿的自旋起着重要作用,尽管不足以解释这种巨大的磁矩。这些性质与使用等离子体熔化技术生产的无氧纳米颗粒有关。

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