Tunable room-temperature ferromagnetism in Co-doped two-dimensional van der Waals ZnO

Author:

Chen Rui,Luo Fuchuan,Liu YuziORCID,Song Yu,Dong Yu,Wu Shan,Cao Jinhua,Yang Fuyi,N’Diaye AlphaORCID,Shafer PadraicORCID,Liu YinORCID,Lou Shuai,Huang JunweiORCID,Chen XiangORCID,Fang ZixuanORCID,Wang Qingjun,Jin DafeiORCID,Cheng RanORCID,Yuan Hongtao,Birgeneau Robert J.ORCID,Yao JieORCID

Abstract

AbstractThe recent discovery of ferromagnetism in two-dimensional van der Waals crystals has provoked a surge of interest in the exploration of fundamental spin interaction in reduced dimensions. However, existing material candidates have several limitations, notably lacking intrinsic room-temperature ferromagnetic order and air stability. Here, motivated by the anomalously high Curie temperature observed in bulk diluted magnetic oxides, we demonstrate room-temperature ferromagnetism in Co-doped graphene-like Zinc Oxide, a chemically stable layered material in air, down to single atom thickness. Through the magneto-optic Kerr effect, superconducting quantum interference device and X-ray magnetic circular dichroism measurements, we observe clear evidences of spontaneous magnetization in such exotic material systems at room temperature and above. Transmission electron microscopy and atomic force microscopy results explicitly exclude the existence of metallic Co or cobalt oxides clusters. X-ray characterizations reveal that the substitutional Co atoms form Co2+ states in the graphitic lattice of ZnO. By varying the Co doping level, we observe transitions between paramagnetic, ferromagnetic and less ordered phases due to the interplay between impurity-band-exchange and super-exchange interactions. Our discovery opens another path to 2D ferromagnetism at room temperature with the advantage of exceptional tunability and robustness.

Funder

Bakar Fellows Programs at University of California, Berkeley

Publisher

Springer Science and Business Media LLC

Subject

General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry

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