Two-dimensional (2D) ferromagnetic (FM) semiconductors hold great promise for the next generation spintronics devices. By performing density functional theory first-principles calculations, both CeF2 and CeFCl monolayers are studied, our calculation results show that CeF2 is a FM semiconductor with sizable magneto-crystalline anisotropy energy (MAE) and high Curie temperature (290 K), but a smaller band gap and thermal instability indicate that it is not applicable at higher temperature. Its isoelectronic analogue, the CeFCl monolayer, is a bipolar FM semiconductor, its dynamics, elastic, and thermal stability are confirmed, our results demonstrate promising applications of the CeFCl monolayer for next-generation spintronic devices owing to its high Curie temperature (200 K), stable semiconducting features, and stability. Under biaxial strain from -5% to 5%, the CeFCl monolayer is a semiconductor with sizable MAE, its Curie temperature can increase to 240 K, the easy magnetization axes for CeFCl monolayer are still along the out-of-plane directions because the couplings between Cefy(3x2-y2) and fx(x2-3y2) orbitals in the different spin channels contribute most to the MAE according to second-order perturbation theory.
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Department of Chemistry, Imperial College LondonKey Laboratory of Computational Physical Sciences (Ministry of Education), State Key Laboratory of Surface Physics, and Department of Physics, Fudan University
张越宇
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倪斤阳
杨吉辉
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Key Laboratory of Computational Physical Sciences (Ministry of Education), State Key Laboratory of Surface Physics, and Department of Physics, Fudan University
Collaborative Innovation Center of Advanced MicrostructuresKey Laboratory of Computational Physical Sciences (Ministry of Education), State Key Laboratory of Surface Physics, and Department of Physics, Fudan University
杨吉辉
向红军
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Key Laboratory of Computational Physical Sciences (Ministry of Education), State Key Laboratory of Surface Physics, and Department of Physics, Fudan University
Collaborative Innovation Center of Advanced MicrostructuresKey Laboratory of Computational Physical Sciences (Ministry of Education), State Key Laboratory of Surface Physics, and Department of Physics, Fudan University
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Bilkent Univ, UNAM Natl Nanotechnol Res Ctr, TR-06800 Ankara, Turkey
Bilkent Univ, Inst Mat Sci & Nanotechnol, TR-06800 Ankara, TurkeyBilkent Univ, UNAM Natl Nanotechnol Res Ctr, TR-06800 Ankara, Turkey
Kecik, D.
Onen, A.
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Bilkent Univ, UNAM Natl Nanotechnol Res Ctr, TR-06800 Ankara, Turkey
Bilkent Univ, Inst Mat Sci & Nanotechnol, TR-06800 Ankara, TurkeyBilkent Univ, UNAM Natl Nanotechnol Res Ctr, TR-06800 Ankara, Turkey
Onen, A.
Konuk, M.
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Bilkent Univ, UNAM Natl Nanotechnol Res Ctr, TR-06800 Ankara, Turkey
Bilkent Univ, Inst Mat Sci & Nanotechnol, TR-06800 Ankara, TurkeyBilkent Univ, UNAM Natl Nanotechnol Res Ctr, TR-06800 Ankara, Turkey
Konuk, M.
Gurbuz, E.
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Bilkent Univ, Dept Phys, TR-06800 Ankara, TurkeyBilkent Univ, UNAM Natl Nanotechnol Res Ctr, TR-06800 Ankara, Turkey
Gurbuz, E.
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Ersan, F.
Cahangirov, S.
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Bilkent Univ, UNAM Natl Nanotechnol Res Ctr, TR-06800 Ankara, Turkey
Bilkent Univ, Inst Mat Sci & Nanotechnol, TR-06800 Ankara, TurkeyBilkent Univ, UNAM Natl Nanotechnol Res Ctr, TR-06800 Ankara, Turkey
Cahangirov, S.
Akturk, E.
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Adnan Menderes Univ, Dept Phys, TR-09100 Aydin, Turkey
Adnan Menderes Univ, Nanotechnol Applicat & Res Ctr, TR-09010 Aydin, TurkeyBilkent Univ, UNAM Natl Nanotechnol Res Ctr, TR-06800 Ankara, Turkey
Akturk, E.
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Durgun, E.
Ciraci, S.
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Bilkent Univ, Dept Phys, TR-06800 Ankara, TurkeyBilkent Univ, UNAM Natl Nanotechnol Res Ctr, TR-06800 Ankara, Turkey