Nanoparticle-on-mirror systems are a stable, robust, and reproducible method of squeezing light into sub-nanometer volumes. Graphene is a particularly interesting material to use as a spacer in such systems as it is the thinnest possible 2D material and can be doped both chemically and electrically to modulate the plasmonic modes. We investigate a simple nanoparticle-on-mirror system, consisting of a Au nanosphere on top of an Au mirror, separated by a monolayer of graphene. With this system, we demonstrate, with both experiments and numerical simulations, how the doping of the graphene and the control of the gap size can be controlled to tune the plasmonic response of the coupled nanosphere using nitric acid. The coupling of the Au nanosph...
© 2016 The Royal Society of Chemistry.One of the most fascinating and important merits of graphene p...
One of the most fascinating and important merits of graphene plasmonics is their tunability over a w...
Graphene has emerged as an outstanding material for optoelectronic applications due to its high elec...
Nanoparticle-on-mirror systems are a stable, robust, and reproducible method of squeezing light into...
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...
ABSTRACT: Graphene is used as the thinnest possible spacer between gold nanoparticles and a gold sub...
Plasmonics is the study of interaction of light with subwavelength metallic structures. Plasmonic na...
Graphene exhibits intriguing electronic and optical properties, making it promising for integrating ...
Among the many extraordinary properties of graphene, its optical response allows one to easily tune ...
International audienceInterest in graphene has been widely increasing since its discovery in 2004. R...
International audienceInterest in graphene has been widely increasing since its discovery in 2004. R...
International audienceInterest in graphene has been widely increasing since its discovery in 2004. R...
International audienceInterest in graphene has been widely increasing since its discovery in 2004. R...
Surface plasmon polariton (SPP) and Localized surface plasmon (LSP) have attracted numerous research...
© 2016 The Royal Society of Chemistry.One of the most fascinating and important merits of graphene p...
One of the most fascinating and important merits of graphene plasmonics is their tunability over a w...
Graphene has emerged as an outstanding material for optoelectronic applications due to its high elec...
Nanoparticle-on-mirror systems are a stable, robust, and reproducible method of squeezing light into...
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...
ABSTRACT: Graphene is used as the thinnest possible spacer between gold nanoparticles and a gold sub...
Plasmonics is the study of interaction of light with subwavelength metallic structures. Plasmonic na...
Graphene exhibits intriguing electronic and optical properties, making it promising for integrating ...
Among the many extraordinary properties of graphene, its optical response allows one to easily tune ...
International audienceInterest in graphene has been widely increasing since its discovery in 2004. R...
International audienceInterest in graphene has been widely increasing since its discovery in 2004. R...
International audienceInterest in graphene has been widely increasing since its discovery in 2004. R...
International audienceInterest in graphene has been widely increasing since its discovery in 2004. R...
Surface plasmon polariton (SPP) and Localized surface plasmon (LSP) have attracted numerous research...
© 2016 The Royal Society of Chemistry.One of the most fascinating and important merits of graphene p...
One of the most fascinating and important merits of graphene plasmonics is their tunability over a w...
Graphene has emerged as an outstanding material for optoelectronic applications due to its high elec...