γ-GeSe: A two-dimensional ferroelectric material with doping-induced ferromagnetism
Two-dimensional (2D) ferroelectricity and ferromagnetism have attracted a lot of attention due to their promising applications, but 2D materials with both properties are quite rare. Here, by performing first-principles calculations, we propose that monolayer γ-GeSe is a 2D ferroelectric material wit...
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Veröffentlicht in: | Applied physics letters 2019-12, Vol.115 (25) |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | Two-dimensional (2D) ferroelectricity and ferromagnetism have attracted a lot of attention due to their promising applications, but 2D materials with both properties are quite rare. Here, by performing first-principles calculations, we propose that monolayer γ-GeSe is a 2D ferroelectric material with an out-of-plane polarization of about 6.48 × 10−12 C/m. It has a Mexican-hat-like band structure, leading to itinerant ferromagnetism upon hole doping. This ferromagnetic phase transition occurs when the doping concentration is about 7.4 × 1012/cm2, and the ferromagnetism can be maintained near 880 K when increasing the doping concentration. Both the ferroelectricity and the induced ferromagnetism can be well modulated by strain. These features make γ-GeSe a promising material for making microelectronics and spintronics devices. Our work also paves the way for searching long-sought high temperature 2D multiferroics. |
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ISSN: | 0003-6951 1077-3118 |
DOI: | 10.1063/1.5133022 |