4.8 Article

Origin of ferromagnetism and the effect of doping on Fe3GeTe2

Journal

NANOSCALE
Volume 12, Issue 25, Pages 13501-13506

Publisher

ROYAL SOC CHEMISTRY
DOI: 10.1039/c9nr10171c

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Funding

  1. Basic Science Research Program through the National Research Foundation of Korea (NRF) - Ministry of Education [2018R1A2B2005204]
  2. Creative Materials Discovery Program through the NRF - Ministry of Science and ICT [2018M3D1A1058754]
  3. National Research Foundation of Korea [2018R1A2B2005204, 2018M3D1A1058754] Funding Source: Korea Institute of Science & Technology Information (KISTI), National Science & Technology Information Service (NTIS)

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Recent experimental findings of two dimensional ferromagnetism in Fe3GeTe2, whose critical temperature can reach room temperature by gating, has attracted great research interest. Here we performed elaborateab initiostudies using density functional theory, dynamical mean-field theory and magnetic force response theory. In contrast to the conventional wisdom, it is unambiguously shown that Fe(3)GeTe(2)is not ferromagnetic but is antiferromagnetic, carrying zero net moment in its stoichiometric phase. Fe defect and hole doping are the keys to make this material ferromagnetic as supported by previously disregarded experiments. Furthermore, we found that electron doping also induces the antiferro- to ferro-magnetic transition. It is crucial to understand the notable recent experiments on gate-controlled ferromagnetism. Our results not only reveal the origin of ferromagnetism of this material but also show how it can be manipulated with defects and doping.

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