Litcius/Paper detail

Multifunctional two-dimensional van der Waals Janus magnet Cr-based dichalcogenide halides

Yusheng Hou, Xue Feng, Liang Qiu, Zhe Wang, Ruqian Wu

2022npj Computational Materials54 citationsDOIOpen Access PDF

Abstract

Abstract Two-dimensional van der Waals Janus materials and their heterostructures offer fertile platforms for designing fascinating functionalities. Here, by means of systematic first-principles studies on van der Waals Janus monolayer Cr-based dichalcogenide halides Cr YX ( Y = S, Se, Te; X = Cl, Br, I), we find that CrS X ( X = Cl, Br, I) are the very desirable high T C ferromagnetic semiconductors with an out-of-plane magnetization. Excitingly, by the benefit of the large magnetic moments on ligand S 2− anions, the sought-after large-gap quantum anomalous Hall effect and sizable valley splitting can be achieved through the magnetic proximity effect in van der Waals heterostructures CrSBr/Bi 2 Se 3 /CrSBr and MoTe 2 /CrSBr, respectively. Additionally, we show that large Dzyaloshinskii–Moriya interactions give rise to skyrmion states in CrTe X ( X = Cl, Br, I) under external magnetic fields. Our work reveals that two-dimensional Janus magnet Cr-based dichalcogenide halides have appealing multifunctionalities in the applications of topological electronic and valleytronic devices.

Topics & Concepts

van der Waals forceJanusCondensed matter physicsHeterojunctionMagnetizationFerromagnetismMonolayerMagnetChemistryMaterials sciencePhysicsNanotechnologyMagnetic fieldQuantum mechanicsMolecule2D Materials and ApplicationsTopological Materials and PhenomenaGraphene research and applications