Alloying enables engineering of the electronic structure of semiconductors for optoelectronic applications. Due to their similar lattice parameters, the two-dimensional semiconducting transition metal dichalcogenides of the MoWSeS group (MX2 where M= Mo or W and X=S or Se) can be grown as high-quality materials with low defect concentrations. Here we investigate the atomic and electronic structure of Mo(1-x)WxS2 alloys using a combination of high-resolution experimental techniques and simulations. Analysis of the Mo and W atomic positions in these alloys, grown by chemical vapour transport, shows that they are randomly distributed, consistent with Monte Carlo simulations that use interaction energies determined from first-principles calcula...
Doping is an effective approach to tailoring the electronic properties of nanomaterials to realize t...
International audienceBinary transition metal dichalcogenide monolayers share common properties such...
International audienceBinary transition metal dichalcogenide monolayers share common properties such...
Layered transition-metal dichalcogenides have extraordinary electronic properties, which can be easi...
Layered transition-metal dichalcogenides have extraordinary electronic properties, which can be easi...
Van der Waals (vdW) materials offer a perspective to revolutionize basically every facet of nowadays...
We studied the nature of excitons in the transition metal dichalcogenide alloy Mo0.6W0.4S2 compared ...
The two-dimensional (2D) transition metal dicalcogenides (TMDs) have taken over the tremendous resea...
The two-dimensional (2D) transition metal dicalcogenides (TMDs) have taken over the tremendous resea...
First-principles calculations have been performed to study the structural features of the monolayer ...
First-principles calculations have been performed to study the structural features of the monolayer ...
We investigated the composition-dependent electronic properties of two-dimensional transition-metal ...
We studied the nature of excitons in the transition metal dichalcogenide alloy Mo0.6W0.4S2 compared ...
We report first principles calculations of the electronic structure of monolayer 1H-MX2 (M = Mo, W; ...
Doping is an effective approach to tailoring the electronic properties of nanomaterials to realize t...
Doping is an effective approach to tailoring the electronic properties of nanomaterials to realize t...
International audienceBinary transition metal dichalcogenide monolayers share common properties such...
International audienceBinary transition metal dichalcogenide monolayers share common properties such...
Layered transition-metal dichalcogenides have extraordinary electronic properties, which can be easi...
Layered transition-metal dichalcogenides have extraordinary electronic properties, which can be easi...
Van der Waals (vdW) materials offer a perspective to revolutionize basically every facet of nowadays...
We studied the nature of excitons in the transition metal dichalcogenide alloy Mo0.6W0.4S2 compared ...
The two-dimensional (2D) transition metal dicalcogenides (TMDs) have taken over the tremendous resea...
The two-dimensional (2D) transition metal dicalcogenides (TMDs) have taken over the tremendous resea...
First-principles calculations have been performed to study the structural features of the monolayer ...
First-principles calculations have been performed to study the structural features of the monolayer ...
We investigated the composition-dependent electronic properties of two-dimensional transition-metal ...
We studied the nature of excitons in the transition metal dichalcogenide alloy Mo0.6W0.4S2 compared ...
We report first principles calculations of the electronic structure of monolayer 1H-MX2 (M = Mo, W; ...
Doping is an effective approach to tailoring the electronic properties of nanomaterials to realize t...
Doping is an effective approach to tailoring the electronic properties of nanomaterials to realize t...
International audienceBinary transition metal dichalcogenide monolayers share common properties such...
International audienceBinary transition metal dichalcogenide monolayers share common properties such...