Demands on high-quality layer structured two-dimen sional (2D) thin films such as pnictogen chalcogenides and transition metal dichalcogenides are growing due to the findings of exotic physical properties and potentials for device applications. However, the difficulties in controlling epitaxial growth and the unclear understanding of van der Waals epitaxy (vdWE) for a 2D chalcogenide film on a three-dimensional (3D) substrate have been major obstacles for the further advances of 2D materials. Here, we exploit the spontaneous vdWE of a high-quality 2D chalcogenide (Bi0.5Sb1.5Te3) film by the chalcogen-driven surface reconstruction of a conventional 3D sapphire substrate. It is verified that the in situ formation of a pseudomorphic Te atomic ...
As structural analogues of graphene but with a sizeable band gap, monolayers of group-VIB transition...
Two-dimensional group IV monochalcogenide semiconductors (SnX, GeX; X = S, Se) are of fundamental in...
The growth of two-dimensional layered chalcogenides on two- or three-dimensional substrates, named (...
Molecular beam epitaxy (MBE) provides a simple but powerful way to synthesize large-area high-qualit...
Atomically thin transition metal dichalcogenides (TMDs) are of interest for next-generation electron...
The key challenge of direct integration of two-dimensional (2D) chalcogenide crystals into functiona...
An attempt to deposit a high quality epitaxial thin film of a two-dimensionally bonded (layered) cha...
The growth of wafer-scale single-crystal two-dimensional transition metal dichalcogenides (TMDs) on ...
Van der Waals epitaxy holds great promise in producing high-quality films of 2D materials. However, ...
Summary: Two-dimensional crystals provide exceptional opportunities for integrating dissimilar mater...
Two-dimensional layered transition metal dichalcogenides (TMDs) show intriguing potential for optoel...
Large-area epitaxy of layered materials is one of the cornerstones for a successful exploitation of ...
Graphene like two-dimensional materials are important elements of potential optoelectronics applicat...
Transition metal dichalcogenides (TMDs) promise to revolutionize optoelectronic applications. While ...
Van der Waals epitaxy enables the integration of 2D transition metal dichalcogenides with other laye...
As structural analogues of graphene but with a sizeable band gap, monolayers of group-VIB transition...
Two-dimensional group IV monochalcogenide semiconductors (SnX, GeX; X = S, Se) are of fundamental in...
The growth of two-dimensional layered chalcogenides on two- or three-dimensional substrates, named (...
Molecular beam epitaxy (MBE) provides a simple but powerful way to synthesize large-area high-qualit...
Atomically thin transition metal dichalcogenides (TMDs) are of interest for next-generation electron...
The key challenge of direct integration of two-dimensional (2D) chalcogenide crystals into functiona...
An attempt to deposit a high quality epitaxial thin film of a two-dimensionally bonded (layered) cha...
The growth of wafer-scale single-crystal two-dimensional transition metal dichalcogenides (TMDs) on ...
Van der Waals epitaxy holds great promise in producing high-quality films of 2D materials. However, ...
Summary: Two-dimensional crystals provide exceptional opportunities for integrating dissimilar mater...
Two-dimensional layered transition metal dichalcogenides (TMDs) show intriguing potential for optoel...
Large-area epitaxy of layered materials is one of the cornerstones for a successful exploitation of ...
Graphene like two-dimensional materials are important elements of potential optoelectronics applicat...
Transition metal dichalcogenides (TMDs) promise to revolutionize optoelectronic applications. While ...
Van der Waals epitaxy enables the integration of 2D transition metal dichalcogenides with other laye...
As structural analogues of graphene but with a sizeable band gap, monolayers of group-VIB transition...
Two-dimensional group IV monochalcogenide semiconductors (SnX, GeX; X = S, Se) are of fundamental in...
The growth of two-dimensional layered chalcogenides on two- or three-dimensional substrates, named (...