Batsaikhan Erdembayalag, Lee Chi-Hung, Hsu Han, Wu Chun-Ming, Peng Jen-Chih, Ma Ma-Hsuan, Deleg Sangaa, Li Wen-Hsien
Department of Physics, National Central University, Jhongli 32001, Taiwan.
Institute of Physics and Technology, Mongolian Academy of Sciences, Ulaanbaatar 13330, Mongolia.
ACS Omega. 2020 Feb 21;5(8):3849-3856. doi: 10.1021/acsomega.9b02913. eCollection 2020 Mar 3.
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 - and -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.
利用磁化强度、X射线衍射、中子衍射和拉曼散射测量对完全氧化的裸露氧化铜纳米颗粒的磁性进行了研究。即使在300 K时,在8.8 nm氧化铜纳米颗粒聚集体的等温磁化强度中也清晰地显示出朗之万场分布,表明铁磁响应比块状氧化铜增强了172倍。8.8 nm氧化铜的表面磁化强度达到核心磁化强度的18%。8.8 nm氧化铜中的铜自旋在400 K以下有序排列,这比块状氧化铜中观察到的231 K高1.7倍。对于8.8 nm氧化铜,发现了一种相对简单的磁性结构,其可以用(0.2, 0, 0.2)的调制矢量进行索引,但在块状氧化铜中未观察到磁性不可公度性。8.8 nm氧化铜中的铜自旋形成了沿晶体学和轴方向长度尺度为5个化学晶胞长的自旋密度波。大量的电子电荷从铜晶格位置周围向两个相邻铜 - 铜离子的互连区域转移,导致8.8 nm氧化铜中相邻铜自旋之间的铁磁直接交换相互作用更强。