One of the most fascinating and important merits of graphene plasmonics is their tunability over a wide range. While chemical doping has proven to be a facile and effective way to create graphene plasmons, most of the previous studies focused on the macroscopic behaviors of the plasmons in chemically-doped graphene and little was known about their nanoscale responses and related mechanisms. Here, to the best of our knowledge, we present the first experimental near-field optical study on chemically-doped graphene with improved surface plasmon characteristics. By using a scattering-type scanning near-field optical microscope (s-SNOM), we managed to show that the graphene plasmons can be tuned and improved using a facile chemical doping method...
13 pags, 10 figs© 2013 Science Wise Publishing. Plasmons produce large confinement and enhancement o...
Graphene has been identified as an emerging horizon for a nanoscale photonic platform because the Fe...
Single-atom B or N substitutional doping in single-layer suspended graphene, realized by low-energy ...
© 2016 The Royal Society of Chemistry.One of the most fascinating and important merits of graphene p...
As a two-dimensional semimetal, graphene offers clear advantages for plasmonic applications over con...
We used scattering-type scanning near-field optical microscopy (s-SNOM) to investigate the plasmonic...
Although plasmon modes exist in doped graphene, the limited range of doping achieved by gating restr...
Single-atom B or N substitutional doping in single-layer suspended graphene, realized by low-energy ...
This dissertation presents infrared nano-spectroscopy and nano-imaging studies of graphene plasmons ...
As a two-dimensional semimetal, graphene offers clear advantages for plasmonic applications over con...
An acoustic plasmon mode in a graphene-dielectric-metal structure has recently been spotlighted as a...
Surface plasmons at metal/dielectric interface can resonate with the incident light depending on the...
Surface plasmons are collective oscillations of free charge carriers confined in interface between t...
In the recent times, Graphene 2-D material has risen as a promising platform for opto-electronics an...
In the recent times, Graphene 2-D material has risen as a promising platform for opto-electronics an...
13 pags, 10 figs© 2013 Science Wise Publishing. Plasmons produce large confinement and enhancement o...
Graphene has been identified as an emerging horizon for a nanoscale photonic platform because the Fe...
Single-atom B or N substitutional doping in single-layer suspended graphene, realized by low-energy ...
© 2016 The Royal Society of Chemistry.One of the most fascinating and important merits of graphene p...
As a two-dimensional semimetal, graphene offers clear advantages for plasmonic applications over con...
We used scattering-type scanning near-field optical microscopy (s-SNOM) to investigate the plasmonic...
Although plasmon modes exist in doped graphene, the limited range of doping achieved by gating restr...
Single-atom B or N substitutional doping in single-layer suspended graphene, realized by low-energy ...
This dissertation presents infrared nano-spectroscopy and nano-imaging studies of graphene plasmons ...
As a two-dimensional semimetal, graphene offers clear advantages for plasmonic applications over con...
An acoustic plasmon mode in a graphene-dielectric-metal structure has recently been spotlighted as a...
Surface plasmons at metal/dielectric interface can resonate with the incident light depending on the...
Surface plasmons are collective oscillations of free charge carriers confined in interface between t...
In the recent times, Graphene 2-D material has risen as a promising platform for opto-electronics an...
In the recent times, Graphene 2-D material has risen as a promising platform for opto-electronics an...
13 pags, 10 figs© 2013 Science Wise Publishing. Plasmons produce large confinement and enhancement o...
Graphene has been identified as an emerging horizon for a nanoscale photonic platform because the Fe...
Single-atom B or N substitutional doping in single-layer suspended graphene, realized by low-energy ...