Graphene–boron nitride monolayer heterostructures contain adjacent electrically active and insulating regions in a continuous, single-atom thick layer. To date structures were grown at low pressure, resulting in irregular shapes and edge direction, so studies of the graphene–boron nitride interface were restricted to the microscopy of nanodomains. Here we report templated growth of single crystalline hexagonal boron nitride directly from the oriented edge of hexagonal graphene flakes by atmospheric pressure chemical vapor deposition, and physical property measurements that inform the design of in-plane hybrid electronics. Ribbons of boron nitride monolayer were grown from the edge of a graphene template and inherited its crystallographic or...
Graphene, as a famous Van der Waals material, has attracted intensive attention from research group ...
Precise spatial control over the electrical properties of thin films is the key capability enabling ...
On the path to functional graphene electronics, suitable templates for chemical vapor deposition (CV...
Vertical heterostructures based on two-dimensional layered materials, such as stacked graphene and h...
Vertical heterostructures based on two-dimensional layered materials, such as stacked graphene and h...
Vertical heterostructures based on two-dimensional layered materials, such as stacked graphene and h...
Hexagonal boron nitride (h-BN) is an attractive two-dimensional (2D) dielectric material and thus it...
The design of novel nanomaterials with tunable geometries and properties has transformed chemistry a...
Large-scale growth of high-quality hexagonal boron nitride has been a challenge in two-dimensional-m...
Graphene nanoribbons (GNRs) are ultra-narrow strips of graphene that have the potential to be used i...
The ability to control the formation of interfaces between different materials has become one of the...
We describe the successful in situ chemical vapor deposition synthesis of a graphene-based heterostr...
In-plane and vertically stacked heterostructures of graphene and hexagonal boron nitride (h-BN-G and...
Graphene and hexagonal boron nitride (hBN) heterostructures have attracted considerable attention in...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Electrical Engineering and Comp...
Graphene, as a famous Van der Waals material, has attracted intensive attention from research group ...
Precise spatial control over the electrical properties of thin films is the key capability enabling ...
On the path to functional graphene electronics, suitable templates for chemical vapor deposition (CV...
Vertical heterostructures based on two-dimensional layered materials, such as stacked graphene and h...
Vertical heterostructures based on two-dimensional layered materials, such as stacked graphene and h...
Vertical heterostructures based on two-dimensional layered materials, such as stacked graphene and h...
Hexagonal boron nitride (h-BN) is an attractive two-dimensional (2D) dielectric material and thus it...
The design of novel nanomaterials with tunable geometries and properties has transformed chemistry a...
Large-scale growth of high-quality hexagonal boron nitride has been a challenge in two-dimensional-m...
Graphene nanoribbons (GNRs) are ultra-narrow strips of graphene that have the potential to be used i...
The ability to control the formation of interfaces between different materials has become one of the...
We describe the successful in situ chemical vapor deposition synthesis of a graphene-based heterostr...
In-plane and vertically stacked heterostructures of graphene and hexagonal boron nitride (h-BN-G and...
Graphene and hexagonal boron nitride (hBN) heterostructures have attracted considerable attention in...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Electrical Engineering and Comp...
Graphene, as a famous Van der Waals material, has attracted intensive attention from research group ...
Precise spatial control over the electrical properties of thin films is the key capability enabling ...
On the path to functional graphene electronics, suitable templates for chemical vapor deposition (CV...