International audiencePoint sources exhibit low threshold electron emission due to local field enhancement at the tip. The development and implementation of tip emitters have been hampered by the need to position them sufficiently apart to achieve field enhancement, limiting the number of emission sites and therefore the overall current. Here we report low threshold field (< 0.1 V/μm) emission of multiple electron beams from atomically thin edges of reduced graphene oxide (rGO). Field emission microscopy measurements show evidence for interference from emission sites that are separated by a few nanometers, suggesting that the emitted electron beams are coherent. On the basis of our high-resolution transmission electron microscopy, infrared ...
Point Projection Microscopy (PPM) is used to image suspended graphene using low-energy electrons (10...
Electron field emission from nanomaterials and nanostructures has remained an area of considerable i...
International audienceIn this study, we expose our methodology to prepare and characterize a single ...
International audiencePoint sources exhibit low threshold electron emission due to local field enhan...
Due to its difficulty, experimental measurement of field emission from a single-layer graphene has n...
Field emission of reduced graphene oxide coated on polystyrene film is studied in both parallel and ...
Electron field emission is a quantum tunneling phenomenon whereby electrons are emitted from a solid...
Graphene has a huge variety of unique optoelectronic properties. Its recent rapid emergence and demo...
Electron emission from individual graphene nanoribbons (GNRs) driven by an internal electric field w...
Electron emission from individual graphene nanoribbons (GNRs) driven by an internal electric field w...
Although good field emission from graphene has been demonstrated from a wide variety of different mi...
We report the field emission characterization of graphene flakes deposited on SiO2/Si substrates. El...
We demonstrate field emission from an integrated three-terminal device using a suspended planar grap...
We report the observation and characterization of field emission current from individual single- and...
We report the observation and characterization of field emission current from individual single- and...
Point Projection Microscopy (PPM) is used to image suspended graphene using low-energy electrons (10...
Electron field emission from nanomaterials and nanostructures has remained an area of considerable i...
International audienceIn this study, we expose our methodology to prepare and characterize a single ...
International audiencePoint sources exhibit low threshold electron emission due to local field enhan...
Due to its difficulty, experimental measurement of field emission from a single-layer graphene has n...
Field emission of reduced graphene oxide coated on polystyrene film is studied in both parallel and ...
Electron field emission is a quantum tunneling phenomenon whereby electrons are emitted from a solid...
Graphene has a huge variety of unique optoelectronic properties. Its recent rapid emergence and demo...
Electron emission from individual graphene nanoribbons (GNRs) driven by an internal electric field w...
Electron emission from individual graphene nanoribbons (GNRs) driven by an internal electric field w...
Although good field emission from graphene has been demonstrated from a wide variety of different mi...
We report the field emission characterization of graphene flakes deposited on SiO2/Si substrates. El...
We demonstrate field emission from an integrated three-terminal device using a suspended planar grap...
We report the observation and characterization of field emission current from individual single- and...
We report the observation and characterization of field emission current from individual single- and...
Point Projection Microscopy (PPM) is used to image suspended graphene using low-energy electrons (10...
Electron field emission from nanomaterials and nanostructures has remained an area of considerable i...
International audienceIn this study, we expose our methodology to prepare and characterize a single ...