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Largely Enhanced Ferromagnetism in Bare CuO Nanoparticles by a Small Size Effect

机译:通过小尺寸效应在很大程度上增强了裸CuO纳米粒子的铁磁性

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Magnetic properties of fully oxygenated bare CuO nanoparticles have been investigated using magnetization, X-ray diffraction, neutron diffraction, and Raman scattering measurements. The Langevin field profile is clearly revealed in the isothermal magnetization of 8.8 nm CuO nanoparticle assembly even at 300 K, revealing a 172 times enhancement of the ferromagnetic responses over that of bulk CuO. Surface magnetization of 8.8 nm CuO reaches 18% of the core magnetization. The Cu spins in 8.8 nm CuO order below 400 K, which is 1.7 times higher than the 231 K observed in bulk CuO. A relatively simple magnetic structure that may be indexed using a modulation vector of (0.2, 0, 0.2) was found for the 8.8 nm CuO, but no magnetic incommensurability was observed in bulk CuO. The Cu spins in 8.8 nm CuO form spin density waves with length scales of 5 chemical unit cells long along the crystallographic a - and c -axis directions. Considerable amounts of electronic charge shift from around the Cu lattice sites toward the interconnecting regions of two neighboring Cu–Cu ions, resulting in a stronger ferromagnetic direct exchange interaction for the neighboring Cu spins in 8.8 nm CuO.
机译:使用磁化,X射线衍射,中子衍射和拉曼散射测量研究了完全含氧裸CuO纳米颗粒的磁性。在8.8nm CuO纳米颗粒组装的等温磁化中清楚地揭示了Langevin现场轮廓甚至在300k下,揭示了散装CuO的铁磁反应的增强172倍。 8.8nm Cuo的表面磁化达到核心磁化的18%。 Cu旋转在8.8nm CuO阶低于400 k的下降,其比在散装CuO中观察到的231k的1.7倍。可以使用(0.2,0,0.2)的调节载体进行相对简单的磁性结构,用于8.8nm CuO,但在散装CuO中没有观察到磁性不相应性。 Cu旋转在8.8nm CuO中,沿着晶体α和 C轴方向长度为5个化学单位细胞长度的旋转密度波。从Cu格子位点朝向两个相邻的Cu-Cu离子的互连区域围绕Cu格子部位偏移的大量电子电荷偏移,导致相邻Cu旋转的较强的铁磁直接交换相互作用在8.8nm CuO中。

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