Controllable atmospheric pressure CVD has been optimized to grow transition metal dichalcogenide MoSe2 with tunable morphology at 750 °C on a silicon substrate with a native oxide layer of 250 nm. Utilizing tetrapotassium perylene-3,4,9,10-tetracarboxylate (PTAS) as a seed promoter and varying the vertical distance between the substrate and the precursor MoO3, different morphologies of MoSe2 were achieved, including 2D triangles, hexagons, 3D pyramids and vertically aligned MoSe2 sheets. We find that the shape of MoSe2 is highly dependent upon the distance h between the substrate and the precursor. The change in the morphology is attributed to the confinement of vapor (MoO3 and Se) precursors and their concentrations due to the change in h....
The chemical vapor deposition of monolayer and few-layer transition metal dichalcogenides is a rapid...
Two dimensional (2D) materials-based nanostructures have attracted much attention due to their uniqu...
Atomically thin semiconducting transition-metal dichalcogenides have been attracting lots of attenti...
Atomically thin transition metal dichalcogenides (TMDCs) have drawn much interest for their promisin...
In this work, we report that oriented MoSe2 nanosheets with varying layers and structures can be syn...
In the 2D material framework, molybdenum disulfide (MoS2) was originally studied as an archetypical...
ABSTRACT: Atmospheric-pressure chemical vapor deposi-tion (CVD) is used to grow monolayer MoS2 two-d...
Two-dimensional transition metal dichalcogenides (TMDs) offer numerous advantages over silicon-based...
MasterTransition metal dichalcogenides, TMDCs is a group of 2 – dimensional material that is being d...
In this work, we report the impact of substrate type on the morphological and structural properties ...
Though chemical vapor deposition (CVD) methods have been widely used in the growth of two-dimensiona...
Among the emerging 2D materials, transition metal chalcogenides are particularly encouraging as alte...
Atmospheric pressure chemical vapor deposition (CVD) is presently a promising approach for preparing...
Controlled and simple synthesis strategy of two-dimensional (2D) nanomaterials is critical for desig...
Molybdenum disulfide (MoS2) got tremendous attention due to its atomically thin body, rich physics, ...
The chemical vapor deposition of monolayer and few-layer transition metal dichalcogenides is a rapid...
Two dimensional (2D) materials-based nanostructures have attracted much attention due to their uniqu...
Atomically thin semiconducting transition-metal dichalcogenides have been attracting lots of attenti...
Atomically thin transition metal dichalcogenides (TMDCs) have drawn much interest for their promisin...
In this work, we report that oriented MoSe2 nanosheets with varying layers and structures can be syn...
In the 2D material framework, molybdenum disulfide (MoS2) was originally studied as an archetypical...
ABSTRACT: Atmospheric-pressure chemical vapor deposi-tion (CVD) is used to grow monolayer MoS2 two-d...
Two-dimensional transition metal dichalcogenides (TMDs) offer numerous advantages over silicon-based...
MasterTransition metal dichalcogenides, TMDCs is a group of 2 – dimensional material that is being d...
In this work, we report the impact of substrate type on the morphological and structural properties ...
Though chemical vapor deposition (CVD) methods have been widely used in the growth of two-dimensiona...
Among the emerging 2D materials, transition metal chalcogenides are particularly encouraging as alte...
Atmospheric pressure chemical vapor deposition (CVD) is presently a promising approach for preparing...
Controlled and simple synthesis strategy of two-dimensional (2D) nanomaterials is critical for desig...
Molybdenum disulfide (MoS2) got tremendous attention due to its atomically thin body, rich physics, ...
The chemical vapor deposition of monolayer and few-layer transition metal dichalcogenides is a rapid...
Two dimensional (2D) materials-based nanostructures have attracted much attention due to their uniqu...
Atomically thin semiconducting transition-metal dichalcogenides have been attracting lots of attenti...