Two-dimensional (2D) intrinsic ferromagnets with high Curie temperature (TC) are desirable for spintronic applications. Using systematic first-principles calculations, we investigate the electronic and magnetic properties of 22 monolayer 2D materials with layered bulk phases. From these candidates, we screen out five ferromagnetic monolayer materials belonging to three types of structures: type i (ScCl, YCl, LaCl), type ii (LaBr2), and type iii (CrSBr). Type i is a kind of metallic ferromagnetic material, whereas LaBr2 and CrSBr of type ii and iii are small-bandgap ferromagnetic semiconductors with TC near room temperature. Moreover, the ferromagnetic CrSBr monolayer possesses a large magnetic moment of ∼3 μB per Cr atom, originating from i...
The monolayer halides CrX_{3} (X=Cl, Br, I) attract significant attention for realizing 2D magnets w...
Design and synthesis of two-dimensional (2D) materials with robust ferromagnetism and biocompatibili...
The rational design of ferromagnetic materials is crucial for the development of spintronic devices....
To date, only a few two-dimensional (2D) magnetic crystals have been experimentally confirmed, such ...
A novel family of two-dimensional Cr2X2Se (X = I, Br, Cl) monolayers with intrinsic magnetism has be...
Room-temperature (RT) ferromagnetic semiconductors can be used to construct new information devices,...
Exploring room-temperature intrinsic magnetism in two-dimensional (2D) materials for nanoscale spint...
Recent experiments have proved that the intrinsic two-dimensional (2D) magnetism has aroused strong ...
Two-dimensional (2D) ferromagnetic materials with <i>intrinsic</i> half-metallicity are highly desir...
The monolayer halides CrX$_3$ (X=Cl, Br, I) attract significant attention for realizing 2D magnets w...
The monolayer halides CrX$_3$ (X=Cl, Br, I) attract significant attention for realizing 2D magnets w...
Two-dimensional (2D) magnetic materials are essential to developing high-performance spintronic devi...
Two-dimensional (2D) ferromagnetic semiconductors have been recognized as the cornerstone for next-g...
Transition metal boro-carbide (TM2BC) structures crystallize in the layered orthorhombic structure i...
Transition metal boro-carbide (TM2BC) structures crystallize in the layered orthorhombic structure i...
The monolayer halides CrX_{3} (X=Cl, Br, I) attract significant attention for realizing 2D magnets w...
Design and synthesis of two-dimensional (2D) materials with robust ferromagnetism and biocompatibili...
The rational design of ferromagnetic materials is crucial for the development of spintronic devices....
To date, only a few two-dimensional (2D) magnetic crystals have been experimentally confirmed, such ...
A novel family of two-dimensional Cr2X2Se (X = I, Br, Cl) monolayers with intrinsic magnetism has be...
Room-temperature (RT) ferromagnetic semiconductors can be used to construct new information devices,...
Exploring room-temperature intrinsic magnetism in two-dimensional (2D) materials for nanoscale spint...
Recent experiments have proved that the intrinsic two-dimensional (2D) magnetism has aroused strong ...
Two-dimensional (2D) ferromagnetic materials with <i>intrinsic</i> half-metallicity are highly desir...
The monolayer halides CrX$_3$ (X=Cl, Br, I) attract significant attention for realizing 2D magnets w...
The monolayer halides CrX$_3$ (X=Cl, Br, I) attract significant attention for realizing 2D magnets w...
Two-dimensional (2D) magnetic materials are essential to developing high-performance spintronic devi...
Two-dimensional (2D) ferromagnetic semiconductors have been recognized as the cornerstone for next-g...
Transition metal boro-carbide (TM2BC) structures crystallize in the layered orthorhombic structure i...
Transition metal boro-carbide (TM2BC) structures crystallize in the layered orthorhombic structure i...
The monolayer halides CrX_{3} (X=Cl, Br, I) attract significant attention for realizing 2D magnets w...
Design and synthesis of two-dimensional (2D) materials with robust ferromagnetism and biocompatibili...
The rational design of ferromagnetic materials is crucial for the development of spintronic devices....