期刊
PHYSICAL CHEMISTRY CHEMICAL PHYSICS
卷 22, 期 26, 页码 14503-14513出版社
ROYAL SOC CHEMISTRY
DOI: 10.1039/d0cp02293d
关键词
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资金
- National Natural Science Foundation of China [51701071]
- Scientific Research Fund of Hunan Provincial Education Department [18A347, 19C0487]
On the basis of density functional theory, we predicted that Janus CrTeI and CrSeBr monolayers possess highly energetic, dynamical, and mechanical stability. Due to noncentral symmetry, the two monolayers exhibit vertical piezoelectricity with large piezoelectric coefficientsd(31)(1.745 and 1.716 pm V(-1)for CrBSe and CrTeI, respectively), which are larger than those of most materials in existence. Both systems are also ferromagnetic (FM) semiconductors, with Curie temperature (T-C) higher than 550 K and large in-plane magnetic anisotropy energy. Superexchange interactions are responsible for high-temperature FM order. A semiconductor to half metal transition can be regulated by carrier doping, which can be carried out by gate voltages. Doped systems still retain the same FM order as pristine ones; in particular, hole doping enhances exchange coupling, thereby increasingT(C). The combination of piezoelectricity, highT(C), and controllable electronic structures and magnetic properties makes magnetic 2D Janus CrSeBr and CrTeI attractive materials for potential applications in nanoelectronics, electromechanics, and spintronics.
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