With advances in the growth of Janus transition metal dichalcogenide (TMD) monolayers and potential applications for materials with a permanent dipole moment, we investigate the electronic, linear, and second-order nonlinear optical properties of Janus TMDs using first-principles calculations. We compare our results to available experimental measurements, finding relatively good agreement. We find the appearance of Rashba spin splitting and the mixing of the second-order nonlinear susceptibility components in Janus TMD monolayers contrary to their TMD monolayer counterparts. While the Rashba effect is small, it does modify the electronic band structure near Γ, making Janus TMDs potentially useful for spintronic applications. In analyzing th...
International audienceWe theoretically predict that vanadium-based Janus dichalcogenide monolayers c...
The compositional as well as structural asymmetries in Janus transition metal dichalcogenides (J-TMD...
We investigated the structural, electronic, and photocatalytic properties of the Janus monolayers (M...
The successful fabrication of Janus transition metal dichalcogenide (TMD) monolayer has sparked exte...
Structural symmetry-breaking plays a crucial role in determining the electronic band structures of t...
Utilizing first-principles calculations, we have investigated the structural, electronic, and optic ...
We present a detailed calculation of the linear and nonlinear optical response of four types of mono...
Janus transition metal dichalcogenides are an emerging class of atomically thin materials with engin...
Beginning with the discovery of graphene, two-dimensional materials have amassed a strong i...
First-principles calculations are performed to study the structural stability and spintronics proper...
The new class of Janus two-dimensional (2D) transition-metal dichalcogenides with two different inte...
By means of comprehensive first-principles calculations, we studied the geometric structure, the sta...
| openaire: EC/FP7/631610/EU//GrabFast | openaire: EC/H2020/696656/EU//GrapheneCore1Monolayer transi...
peer reviewedWe demonstrate the possibility of engineering the optical properties of transition meta...
The new class of Janus two-dimensional (2D) transition metal dichalcogenides with two different inte...
International audienceWe theoretically predict that vanadium-based Janus dichalcogenide monolayers c...
The compositional as well as structural asymmetries in Janus transition metal dichalcogenides (J-TMD...
We investigated the structural, electronic, and photocatalytic properties of the Janus monolayers (M...
The successful fabrication of Janus transition metal dichalcogenide (TMD) monolayer has sparked exte...
Structural symmetry-breaking plays a crucial role in determining the electronic band structures of t...
Utilizing first-principles calculations, we have investigated the structural, electronic, and optic ...
We present a detailed calculation of the linear and nonlinear optical response of four types of mono...
Janus transition metal dichalcogenides are an emerging class of atomically thin materials with engin...
Beginning with the discovery of graphene, two-dimensional materials have amassed a strong i...
First-principles calculations are performed to study the structural stability and spintronics proper...
The new class of Janus two-dimensional (2D) transition-metal dichalcogenides with two different inte...
By means of comprehensive first-principles calculations, we studied the geometric structure, the sta...
| openaire: EC/FP7/631610/EU//GrabFast | openaire: EC/H2020/696656/EU//GrapheneCore1Monolayer transi...
peer reviewedWe demonstrate the possibility of engineering the optical properties of transition meta...
The new class of Janus two-dimensional (2D) transition metal dichalcogenides with two different inte...
International audienceWe theoretically predict that vanadium-based Janus dichalcogenide monolayers c...
The compositional as well as structural asymmetries in Janus transition metal dichalcogenides (J-TMD...
We investigated the structural, electronic, and photocatalytic properties of the Janus monolayers (M...