Monolayer MoS2 prepared by chemical vapor deposition (CVD) has a highly polycrystalline nature largely because of the coalescence of misoriented domains, which severely hinders its future applications. Identifying and even controlling the orientations of individual domains and understanding their merging behavior therefore hold fundamental significance. In this work, by using single-crystalline sapphire (0001) substrates, we designed the CVD growth of monolayer MoS2 triangles and their polycrystalline aggregates for such purposes. The obtained triangular MoS2 domains on sapphire were found to distributively align in two directions, which, as supported by density functional theory calculations, should be attributed to the relatively small fl...
Polycrystalline growth of molybdenum disulfide (MoS2) using chemical vapor deposition (CVD) methods ...
Aligned growth of transition metal dichalcogenides and related two-dimensional (2D) materials is ess...
Atomically thin tungsten disulfide (WS2), a structural analogue to MoS2, has attracted great Interes...
Monolayer MoS<sub>2</sub> prepared by chemical vapor deposition (CVD) has a highly polycrystalline n...
Two-dimensional (2D) transition-metal dichalcogenide (TMDC) semiconductors are important for next-ge...
MasterThe isolation of graphene from bulk graphite has marked the start of a new era: two-dimensiona...
Two-dimensional (2D) transition-metal dichalcogenide (TMDC) semiconductors are important for next-ge...
Two-dimensional (2D) monolayer molybdenum disulfide (MoS2) semiconductors are an emerging material w...
We have evaluated as-grown MoS2 crystals, epitaxially grown on a monocrystalline sapphire by chemica...
The growth of single-layer MoS2 with chemical vapor deposition is an established method that can pro...
The growth of single-layer MoS2 with chemical vapor deposition is an established method that can pro...
We have studied the atomic structure of small secondary domains that nucleate on monolayer MoS2 grow...
Monolayer molybdenum disulfide (MoS2) crystals grown on amorphous substrates such as SiO2 are random...
A highly reproducible route for the epitaxial growth of single-crystalline monolayer MoS2 on a C-pla...
ABSTRACT: Atmospheric-pressure chemical vapor deposi-tion (CVD) is used to grow monolayer MoS2 two-d...
Polycrystalline growth of molybdenum disulfide (MoS2) using chemical vapor deposition (CVD) methods ...
Aligned growth of transition metal dichalcogenides and related two-dimensional (2D) materials is ess...
Atomically thin tungsten disulfide (WS2), a structural analogue to MoS2, has attracted great Interes...
Monolayer MoS<sub>2</sub> prepared by chemical vapor deposition (CVD) has a highly polycrystalline n...
Two-dimensional (2D) transition-metal dichalcogenide (TMDC) semiconductors are important for next-ge...
MasterThe isolation of graphene from bulk graphite has marked the start of a new era: two-dimensiona...
Two-dimensional (2D) transition-metal dichalcogenide (TMDC) semiconductors are important for next-ge...
Two-dimensional (2D) monolayer molybdenum disulfide (MoS2) semiconductors are an emerging material w...
We have evaluated as-grown MoS2 crystals, epitaxially grown on a monocrystalline sapphire by chemica...
The growth of single-layer MoS2 with chemical vapor deposition is an established method that can pro...
The growth of single-layer MoS2 with chemical vapor deposition is an established method that can pro...
We have studied the atomic structure of small secondary domains that nucleate on monolayer MoS2 grow...
Monolayer molybdenum disulfide (MoS2) crystals grown on amorphous substrates such as SiO2 are random...
A highly reproducible route for the epitaxial growth of single-crystalline monolayer MoS2 on a C-pla...
ABSTRACT: Atmospheric-pressure chemical vapor deposi-tion (CVD) is used to grow monolayer MoS2 two-d...
Polycrystalline growth of molybdenum disulfide (MoS2) using chemical vapor deposition (CVD) methods ...
Aligned growth of transition metal dichalcogenides and related two-dimensional (2D) materials is ess...
Atomically thin tungsten disulfide (WS2), a structural analogue to MoS2, has attracted great Interes...