This work demonstrates the use of single-layer graphene as a template for the formation of subnanometer plasmonic gaps using a scalable fabrication process called “nanoskiving.” These gaps are formed between parallel gold nanowires in a process that first produces three-layer thin films with the architecture gold/single-layer graphene/gold, and then sections the composite films with an ultramicrotome. The structures produced can be treated as two gold nanowires separated along their entire lengths by an atomically thin graphene nanoribbon. Oxygen plasma etches the sandwiched graphene to a finite depth; this action produces a subnanometer gap near the top surface of the junction between the wires that is capable of supporting highly confined...
Gap plasmonic nanostructures are of great interest due to their ability to concentrate light into sm...
Gap plasmonic nanostructures are of great interest due to their ability to concentrate light into sm...
Gap plasmonic nanostructures are of great interest due to their ability to concentrate light into sm...
ABSTRACT: Graphene is used as the thinnest possible spacer between gold nanoparticles and a gold sub...
Graphene is used as the thinnest possible spacer between gold nanoparticles and a gold substrate. Th...
Graphene is used as the thinnest possible spacer between gold nanoparticles and a gold substrate. Th...
This paper describes the fabrication of electrically addressable, high-aspect-ratio (>10000:1) na...
This paper describes the fabrication of electrically addressable, high-aspect-ratio (>10000:1) na...
This paper describes the fabrication of electrically addressable, high-aspect-ratio (>10000:1) na...
This paper describes the fabrication of electrically addressable, high-aspect-ratio (>10000:1) na...
This paper describes the fabrication of electrically addressable, high-aspect-ratio (>10000:1) nanow...
This paper describes the fabrication of electrically addressable, high-aspect-ratio (>10000:1) nanow...
We report a simple and highly efficient method for creating graphene nanostructures with gaps that c...
We report a simple and highly efficient method for creating graphene nanostructures with gaps that c...
We report a simple and highly efficient method for creating graphene nanostructures with gaps that c...
Gap plasmonic nanostructures are of great interest due to their ability to concentrate light into sm...
Gap plasmonic nanostructures are of great interest due to their ability to concentrate light into sm...
Gap plasmonic nanostructures are of great interest due to their ability to concentrate light into sm...
ABSTRACT: Graphene is used as the thinnest possible spacer between gold nanoparticles and a gold sub...
Graphene is used as the thinnest possible spacer between gold nanoparticles and a gold substrate. Th...
Graphene is used as the thinnest possible spacer between gold nanoparticles and a gold substrate. Th...
This paper describes the fabrication of electrically addressable, high-aspect-ratio (>10000:1) na...
This paper describes the fabrication of electrically addressable, high-aspect-ratio (>10000:1) na...
This paper describes the fabrication of electrically addressable, high-aspect-ratio (>10000:1) na...
This paper describes the fabrication of electrically addressable, high-aspect-ratio (>10000:1) na...
This paper describes the fabrication of electrically addressable, high-aspect-ratio (>10000:1) nanow...
This paper describes the fabrication of electrically addressable, high-aspect-ratio (>10000:1) nanow...
We report a simple and highly efficient method for creating graphene nanostructures with gaps that c...
We report a simple and highly efficient method for creating graphene nanostructures with gaps that c...
We report a simple and highly efficient method for creating graphene nanostructures with gaps that c...
Gap plasmonic nanostructures are of great interest due to their ability to concentrate light into sm...
Gap plasmonic nanostructures are of great interest due to their ability to concentrate light into sm...
Gap plasmonic nanostructures are of great interest due to their ability to concentrate light into sm...