The integration of various low dimensional materials into large area, scalable, heterostructures is highly desirable. For example, 0D semiconducting nanocrystals (NCs) exhibit attractive optical emission and absorption properties, while single layer 2D graphene is ideally suited to act as a transparent electrode due to its superior electrical and mechanical properties. The integration of silica encapsulated1, 0D semiconducting NCs with 2D graphene grown by chemical vapor deposition (CVD) is presented in this work. Large area NC films were deposited onto graphene using the Langmuir-Blodgett (LB) method, a technique which allows for the deposition of nanomaterials on a liquid surface. The surface properties of the silica coated NCs necessitat...
Graphene is one of the most amazing materials every discovered. It is the first stable two-dimension...
We discuss methods of fabricating 2D structures from materials held together by strong van der Waals...
Direct, tunable coupling between individually assembled graphene layers is a next step toward design...
This work explores the assembly of large-area heterostructures comprised of a film of silica-encapsu...
Metal-catalyst-free chemical vapor deposition (CVD) of large area uniform nanocrystalline graphene o...
Single or few layer graphene can be considered an exciting pseudo-two-dimensional molecular material...
This paper reports the development of an efficient method to produce transparent conductive graphene...
The large-scale synthesis of atomically thin, layered MoS<sub>2</sub>/graphene heterostructures is o...
The production of large area, high quality two-dimensional (2D) materials using chemical vapour depo...
Problems associated with large- scale pattern growth of graphene constitute one of the main obstacle...
The discovery of graphene has so far drawn significant attentions since 2004 when isolation of singl...
The unique electrical and optical properties of graphene have attracted application as transparent e...
The fundamental properties of graphene are making it an attractive material for a wide variety of ap...
Edge contacts between two-dimensional (2D) materials in the in-plane direction can achieve minimal c...
THESIS 11024Research of two-dimensional nanomaterials has been significant since the discovery of gr...
Graphene is one of the most amazing materials every discovered. It is the first stable two-dimension...
We discuss methods of fabricating 2D structures from materials held together by strong van der Waals...
Direct, tunable coupling between individually assembled graphene layers is a next step toward design...
This work explores the assembly of large-area heterostructures comprised of a film of silica-encapsu...
Metal-catalyst-free chemical vapor deposition (CVD) of large area uniform nanocrystalline graphene o...
Single or few layer graphene can be considered an exciting pseudo-two-dimensional molecular material...
This paper reports the development of an efficient method to produce transparent conductive graphene...
The large-scale synthesis of atomically thin, layered MoS<sub>2</sub>/graphene heterostructures is o...
The production of large area, high quality two-dimensional (2D) materials using chemical vapour depo...
Problems associated with large- scale pattern growth of graphene constitute one of the main obstacle...
The discovery of graphene has so far drawn significant attentions since 2004 when isolation of singl...
The unique electrical and optical properties of graphene have attracted application as transparent e...
The fundamental properties of graphene are making it an attractive material for a wide variety of ap...
Edge contacts between two-dimensional (2D) materials in the in-plane direction can achieve minimal c...
THESIS 11024Research of two-dimensional nanomaterials has been significant since the discovery of gr...
Graphene is one of the most amazing materials every discovered. It is the first stable two-dimension...
We discuss methods of fabricating 2D structures from materials held together by strong van der Waals...
Direct, tunable coupling between individually assembled graphene layers is a next step toward design...