4.5 Article

Electronic and magnetic properties of SnS2 monolayer doped with 4d transition metals

Journal

JOURNAL OF MAGNETISM AND MAGNETIC MATERIALS
Volume 438, Issue -, Pages 152-162

Publisher

ELSEVIER
DOI: 10.1016/j.jmmm.2017.04.090

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Funding

  1. Hunan Provincial Natural Science Foundation [2016JJ6028, 2017JJ3049]
  2. Hunan Provincial Education Department [16A046, 16C0391]

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We investigate the electronic structures and magnetic properties of SnS2 monolayers substitutionally doped with 4-d transition-metal through systematic first principles calculations. The doped complexes exhibit interesting electronic and magnetic behaviors, depending on the interplay between crystal field splitting, Hund's rule, and 4d levels. The system doped with Y is nonmagnetic metal. Both the Zr- and Pd-doped systems remain nonmagnetic semiconductors. Doping results in half-metallic states for Nb-, Ru-, Rh-, Ag, and Cd doped cases, and magnetic semiconductors for systems with Mo and Tc dopants. In particular, the Nb- and Mo-doped systems display long-ranged ferromagnetic ordering with Curie temperature above room temperature, which are primarily attributable to the double-exchange mechanism, and the p-d/p-p hybridizations, respectively. Moreover, The Mo-doped system has excellent energetic stability and flexible mechanical stability, and also possesses remarkable dynamic and thermal (500 K) stability. Our studies demonstrate that Nb- and Mo-doped SnS2 monolayers are promising candidates for preparing 2D diluted magnetic semiconductors, and hence will be a helpful clue for experimentalists. (C) 2017 Elsevier B.V. All rights reserved.

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