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Recent advances in two-dimensional ferromagnetism: materials synthesis, physical properties and device applications

期刊

NANOSCALE
卷 12, 期 4, 页码 2309-2327

出版社

ROYAL SOC CHEMISTRY
DOI: 10.1039/c9nr08890c

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资金

  1. National Natural Science Foundation of China [11804230, 11774239, 61827815, 61805147, 61435010, 61675135]
  2. Science and Technology Innovation Commission of Shenzhen [KQTD2015032416270385, KQTD20170810105439418, KQTD20180412181422399, JCYJ20170818093035338, JCYJ20170412110137562, ZDSYS-201707271554071, GJHZ20180413181813768]
  3. Science and Technology Development Fund [007/2017/A1, 132/2017/A3]
  4. Macao SAR, China
  5. National Key RAMP
  6. D Program of China [2016YFB0700700]

向作者/读者索取更多资源

Two-dimensional (2D) ferromagnetism is critical for both scientific investigation and technological development owing to its low-dimensionality that brings in quantization of electronic states as well as free axes for device modulation. However, the scarcity of high-temperature 2D ferromagnets has been the obstacle of many research studies, such as the quantum anomalous Hall effect (QAHE) and thin-film spintronics. Indeed, in the case of the isotropic Heisenberg model with finite-range exchange interactions as an example, low-dimensionality is shown to be contraindicated with ferromagnetism. However, the advantages of low-dimensionality for micro-scale patterning could enhance the Curie temperature (T-C) of 2D ferromagnets beyond the T-C of bulk materials, opening the door for designing high-temperature ferromagnets in the 2D limit. In this paper, we review the recent advances in the field of 2D ferromagnets, including their material systems, physical properties, and potential device applications.

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