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铜/氧化亚铜界面中的电子结构与铁磁性调制:界面铜空位及其扩散的影响

Electronic Structure and Ferromagnetism Modulation in Cu/Cu2O Interface: Impact of Interfacial Cu Vacancy and Its Diffusion.

作者信息

Li Hao-Bo, Wang Weichao, Xie Xinjian, Cheng Yahui, Zhang Zhaofu, Dong Hong, Zheng Rongkun, Wang Wei-Hua, Lu Feng, Liu Hui

机构信息

Department of Electronics and Tianjin Key Laboratory of Photo-Electronic Thin Film Device and Technology, Nankai University, Tianjin, 300071, China.

Department of Materials Science and Engineering, The University of Texas at Dallas, Richardson, Texas 75080, United States.

出版信息

Sci Rep. 2015 Oct 19;5:15191. doi: 10.1038/srep15191.

Abstract

Cu/Cu2O composite structures have been discovered to show sizable ferromagnetism (FM) with the potential applications in spintronic devices. To date, there is no consensus on the FM origin in Cu/Cu2O systems. Here, first principles calculations are performed on the interface structure to explore the microscopic mechanism of the FM. It is found that only the Cu vacancy (V(Cu)) adjacent to the outermost Cu2O layer induces a considerable magnetic moment, mostly contributed by 2p orbitals of the nearest-neighbor oxygen atom (O(NN)) with two dangling bonds and 3d orbitals of the Cu atoms bonding with the O(NN). Meanwhile, the charge transfer from Cu to Cu2O creates higher density of states at the Fermi level and subsequently leads to the spontaneous FM. Furthermore, the FM could be modulated by the amount of interfacial V(Cu), governed by the interfacial Cu diffusion with a moderate energy barrier (~1.2 eV). These findings provide insights into the FM mechanism and tuning the FM via interfacial cation diffusion in the Cu/Cu2O contact.

摘要

已发现铜/氧化亚铜复合结构表现出可观的铁磁性,在自旋电子器件中有潜在应用。迄今为止,关于铜/氧化亚铜体系中铁磁性的起源尚无定论。在此,对界面结构进行第一性原理计算,以探究铁磁性的微观机制。研究发现,只有与最外层氧化亚铜层相邻的铜空位(V(Cu))会诱导出可观的磁矩,这主要由具有两个悬空键的近邻氧原子(O(NN))的2p轨道和与O(NN)键合的铜原子的3d轨道贡献。同时,从铜到氧化亚铜的电荷转移在费米能级处产生更高的态密度,进而导致自发铁磁性。此外,铁磁性可通过界面V(Cu)的数量进行调制,这由具有适度能垒(约1.2 eV)的界面铜扩散控制。这些发现为铁磁性机制以及通过铜/氧化亚铜接触中的界面阳离子扩散来调节铁磁性提供了见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d14c/4609911/e91a62a77083/srep15191-f1.jpg

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