<p>Large area chemical vapor deposited graphene and hexagonal boron nitride was used to fabricate graphene – hexagonal boron nitride – graphene symmetric field effect transistors. Gate control of the tunneling characteristics is observed similar to previously reported results for exfoliated graphene – hexagonal boron nitride – graphene devices. Density-of-states features are observed in the tunneling characteristics of the devices, although without large resonant peaks that would arise from lateral momentum conservation. The lack of distinct resonant behavior is attributed to disorder in the devices, and a possible source of the disorder is discussed.</p
We observe a series of sharp resonant features in the differential conductance of graphene-hexagonal...
Graphene is a flat monolayer of carbon atoms tightly packed into a two-dimensional (2D) honeycomb la...
Graphene is a flat monolayer of carbon atoms tightly packed into a two-dimensional (2D) honeycomb la...
Large area chemical vapor deposited graphene and hexagonal boron nitride was used to fabricate graph...
This work is focused on characterizing the impact of material based disorder on the properties of gr...
Graphene, a single sheet of sp2-bonded carbon atoms, is a two-dimensional material with an array of ...
The chemical stability of graphene and other free-standing two-dimensional crystals means that they ...
The chemical stability of graphene and other free-standing two-dimensional crystals means that they ...
A theory is developed for calculating vertical tunneling current between two sheets of bilayer graph...
The chemical stability of graphene and other free-standing two-dimensional crystals means that they ...
Electron tunneling spectroscopy measurements on van der Waals heterostructures consisting of metal a...
We observe a series of sharp resonant features in the differential conductance of graphene-hexagonal...
Electron tunneling spectroscopy measurements on van der Waals heterostructures consisting of metal a...
We observe a series of sharp resonant features in the differential conductance of graphene-hexagonal...
We observe a series of sharp resonant features in the differential conductance of graphene-hexagonal...
We observe a series of sharp resonant features in the differential conductance of graphene-hexagonal...
Graphene is a flat monolayer of carbon atoms tightly packed into a two-dimensional (2D) honeycomb la...
Graphene is a flat monolayer of carbon atoms tightly packed into a two-dimensional (2D) honeycomb la...
Large area chemical vapor deposited graphene and hexagonal boron nitride was used to fabricate graph...
This work is focused on characterizing the impact of material based disorder on the properties of gr...
Graphene, a single sheet of sp2-bonded carbon atoms, is a two-dimensional material with an array of ...
The chemical stability of graphene and other free-standing two-dimensional crystals means that they ...
The chemical stability of graphene and other free-standing two-dimensional crystals means that they ...
A theory is developed for calculating vertical tunneling current between two sheets of bilayer graph...
The chemical stability of graphene and other free-standing two-dimensional crystals means that they ...
Electron tunneling spectroscopy measurements on van der Waals heterostructures consisting of metal a...
We observe a series of sharp resonant features in the differential conductance of graphene-hexagonal...
Electron tunneling spectroscopy measurements on van der Waals heterostructures consisting of metal a...
We observe a series of sharp resonant features in the differential conductance of graphene-hexagonal...
We observe a series of sharp resonant features in the differential conductance of graphene-hexagonal...
We observe a series of sharp resonant features in the differential conductance of graphene-hexagonal...
Graphene is a flat monolayer of carbon atoms tightly packed into a two-dimensional (2D) honeycomb la...
Graphene is a flat monolayer of carbon atoms tightly packed into a two-dimensional (2D) honeycomb la...