Controlling magnetism and electronic properties of two-dimensional (2D) materials by purely electrical means is crucial and highly sought for high-efficiency spintronics devices since electric field can be easily applied locally compared with magnetic field. The recently discover 2D Janus crystals has provide a new platform for nanoscale electronics and spintronics due to their broken inversion symmetry nature. The intrinsic ferromagnetic Jauns monolayer, and hence the tunable physical properties, is therefore of great interest. Here, through comprehensive density functional theory calculations and Monte Carlo simulations, we unveil that single-layer MnSSe is an intrinsic ferromagnetic half-metal with a direct band gap of 1.14 eV in spin-do...
International audienceThe Dzyaloshinskii-Moriya interaction (DMI), which only exists in noncentrosym...
Two-dimensional antiferromagnetic semiconductors have triggered significant attention due to their u...
Engineering the electronic band structure of material systems enables the unprecedented exploration ...
We present first-principles results on the structural, electronic, and magnetic properties of a new ...
Exploring room-temperature intrinsic magnetism in two-dimensional (2D) materials for nanoscale spint...
Two-dimensional (2D) materials with coexistence of ferromagnetism (FM) and ferroelectricity (FE) are...
Half metallic 2D materials with 100% spin polarization at the fermi level can be applied to spintron...
By means of first-principles calculations, we investigated the geometric structure, dynamic and ther...
Inspired by the successful synthesis of two-dimensional (2D) V-based Janus dichloride monolayers wit...
We theoretically predict that vanadium-based Janus dichalcogenide monolayers constitute an ideal pla...
Inspired by recent experiments on the successful fabrication of monolayer Janus transition-metal dic...
Janus two-dimensional materials with large Rashba spin splitting and high electron mobility are rare...
Inspired by recent experiments on the successful fabrication of monolayer Janus transition-metal dic...
Using density functional theory combined with Monte Carlo (MC) simulations, we show that the two dim...
Inspired by recent experiments on the successful fabrication of monolayer Janus transition-metal dic...
International audienceThe Dzyaloshinskii-Moriya interaction (DMI), which only exists in noncentrosym...
Two-dimensional antiferromagnetic semiconductors have triggered significant attention due to their u...
Engineering the electronic band structure of material systems enables the unprecedented exploration ...
We present first-principles results on the structural, electronic, and magnetic properties of a new ...
Exploring room-temperature intrinsic magnetism in two-dimensional (2D) materials for nanoscale spint...
Two-dimensional (2D) materials with coexistence of ferromagnetism (FM) and ferroelectricity (FE) are...
Half metallic 2D materials with 100% spin polarization at the fermi level can be applied to spintron...
By means of first-principles calculations, we investigated the geometric structure, dynamic and ther...
Inspired by the successful synthesis of two-dimensional (2D) V-based Janus dichloride monolayers wit...
We theoretically predict that vanadium-based Janus dichalcogenide monolayers constitute an ideal pla...
Inspired by recent experiments on the successful fabrication of monolayer Janus transition-metal dic...
Janus two-dimensional materials with large Rashba spin splitting and high electron mobility are rare...
Inspired by recent experiments on the successful fabrication of monolayer Janus transition-metal dic...
Using density functional theory combined with Monte Carlo (MC) simulations, we show that the two dim...
Inspired by recent experiments on the successful fabrication of monolayer Janus transition-metal dic...
International audienceThe Dzyaloshinskii-Moriya interaction (DMI), which only exists in noncentrosym...
Two-dimensional antiferromagnetic semiconductors have triggered significant attention due to their u...
Engineering the electronic band structure of material systems enables the unprecedented exploration ...