Simultaneous control of ferromagnetism and ferroelasticity by oxygen octahedral backbone stretching

Genhao Liang, Hui Cao, Long Cheng, Junkun Zha, Mingrui Bao, Fei Ye, Hua Zhou, Aidi Zhao, Xiaofang Zhai
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Abstract

Coexistence of ferromagnetism and ferroelasticity in a single material is an intriguing phenomenon, but has been rarely found. Here we study both the ferromagnetism and ferroelasticity in a group of LaCoO3 films with systematically tuned atomic structures. We found that all films exhibit ferroelastic domains with four-fold symmetry and the larger domain size (higher elasticity) is always accompanied with stronger ferromagnetism. We performed synchrotron X-ray diffraction studies to investigate the backbone structure of the CoO6 octahedra, and found that both the ferromagnetism and the elasticity are simultaneously enhanced when the in-plane Co-O-Co bond angles are straightened. Therefore the study demonstrates the inextricable correlation between the ferromagnetism and ferroelasticity mediated through the octahedral backbone structure, which may open up new possibilities to develop multifunctional materials.
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氧八面体骨架伸展同时控制铁磁性和铁弹性
在单一材料中同时存在铁磁性和铁弹性是一个有趣的现象,但却很少被发现。在这里,我们研究了一组原子结构经过系统调整的钴酸锂薄膜的铁磁性和铁弹性。我们发现,所有薄膜都表现出具有四重对称性的铁弹性域,而且域尺寸越大(弹性越高),铁磁性就越强。我们对 CoO6 八面体的骨架结构进行了同步辐射 X 射线衍射研究,发现当面内 Co-O-Co 键角变直时,铁磁性和弹性同时增强。因此,该研究证明了通过八面体骨架结构介导的铁磁性和铁弹性之间密不可分的关系,这为开发多功能材料提供了新的可能性。
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