材料科学
铁磁性
反铁磁性
离子
磁矩
纳米晶
凝聚态物理
面(心理学)
纳米棒
晶体结构
Crystal(编程语言)
顺磁性
纳米技术
结晶学
物理
化学
五大性格特征
社会心理学
人格
计算机科学
程序设计语言
心理学
有机化学
作者
Wenxian Li,Yan Wang,Xiangyuan Cui,Shangjia Yu,Ying Li,Yemin Hu,Mingyuan Zhu,Rongkun Zheng,Simon P. Ringer
标识
DOI:10.1021/acsami.8b03934
摘要
The magnetic performance of nanomaterials depends on size, shape, and surface of the nanocrystals. Here, the exposed crystal planes of Co3O4 nanocrystals were analyzed to research the dependence of magnetic properties on the configuration environment of the ions exposed on different surfaces. The Co3O4 nanocrystals with exposed (1 0 0), (1 1 0), (1 1 1), and (1 1 2) planes were synthesized using a hydrothermal method in the shapes of nanocube, nanorod, hexagonal nanoplatelet, and nanolaminar, respectively. Ferromagnetic performance was detected in the (1 0 0) and (1 1 1) plane-exposed samples. First-principles calculation results indicate that unlike the nonmagnetic nature in the bulk, the Co3+ ions exposed on or close to the surface possess sizable magnetic moments because of the variation of coordination numbers and lattice distortion, which is responsible for the ferromagnetic-like behavior. The (1 1 0)-exposed sample keeps the natural antiferromagnetic behavior of bulk Co3O4 because either the surface Co3+ ions have no magnetic moments or their moments are in antiferromagnetic coupling. The (1 1 2)-exposed sample also displays antiferromagnetism because the interaction distances between the magnetized Co3+ ions are too long to form effective ferromagnetic coupling.
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