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Development of Ferromagnetic Superspins in Bare Cu Nanoparticles by Electronic Charge Redistribution

机译:电荷再分布在裸铜纳米粒子中的铁磁超旋的发展

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摘要

We report on the results of investigating the ferromagnetic properties of bare Cu nanoparticles. Three sets of bare Cu nanoparticle assemblies with mean particle diameters of 6.6, 8.1, and 11.1 nm were fabricated, employing the gas condensation method. Curie-Weiss paramagnetic responses to a weak driving magnetic field were detected, showing the appearance of particle superspins that overcomes the diamagnetic responses from the inner core. The isothermal magnetization displays a Langevin field profile together with magnetic hysteresis appearing even at 300 K, demonstrating the existence of ferromagnetic superspins in the Cu nanoparticles. Shifting of a noticeable amount of electronic charge from being distributed near the lattice sites in bulk form toward their neighboring ions in nanoparticles was found. The extended 3d and 4s band mixture are the main sources for the development of localized 3d holes for the development of ferromagnetic particle superspins in Cu nanoparticles.
机译:我们报告了研究裸铜纳米粒子的铁磁性能的结果。采用气体冷凝法制备了三组平均粒径分别为6.6、8.1和11.1 nm的裸露的铜纳米粒子组件。检测到居里-魏斯对弱驱动磁场的顺磁响应,显示出克服了来自内核的反磁响应的粒子超旋的出现。等温磁化强度同时显示在300 K时出现的Langevin磁场和磁滞现象,这表明Cu纳米粒子中存在铁磁超旋。发现大量电荷从以散装形式在晶格位点附近分布向纳米颗粒中的其相邻离子移动。扩展的3d和4s带混合物是开发局部3d孔的主要来源,这些孔用于开发Cu纳米颗粒中的铁磁颗粒超自旋。

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