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JIANG Yong, LIU Hao, XING Zhonghua, WANG Tian, LI Xinze, LIU Pengfei, ZHANG Delin. Research progress in 2D spintronics[J]. Metallic Functional Materials, 2026, 33(1): 1-15. DOI: 10.13228/j.boyuan.issn1005-8192.20250258
Citation: JIANG Yong, LIU Hao, XING Zhonghua, WANG Tian, LI Xinze, LIU Pengfei, ZHANG Delin. Research progress in 2D spintronics[J]. Metallic Functional Materials, 2026, 33(1): 1-15. DOI: 10.13228/j.boyuan.issn1005-8192.20250258

Research progress in 2D spintronics

  • Two-dimensional(2D) spintronic devices,benefiting from their dangling-bond-free surfaces,can be stacked or grown into van der Waals heterostructures with ultrahigh-quality interfaces and high spin injection efficiency. This capability offers a promising approach to overcome the limitations of lattice matching and compatibility in conventional spintronics,thereby paving the way for significant physical and technological breakthroughs. This review systematically introduces various methods for preparing 2D materials and highlights recent advances in 2D ferromagnetic heterostructures,focusing on representative materials such as Fe3Ge Te2、Fe3Ga Te2 and WTe2. Finally,a concluding outlook on the future development of2D spintronic devices are provided.
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