Nanostructures of conventional metals offer manipulation of light at the nanoscale but are largely limited to static behavior due to fixed material properties. To develop the next frontier of dynamic nano-optics and metasurfaces, this study utilizes the redox-tunable optical properties of conducting polymers, as recently shown to be capable of sustaining plasmons in their most conducting oxidized state. Electrically tunable conducting polymer nano-optical antennas are presented, using nanodisks of poly(3,4-ethylenedioxythiophene:sulfate) (PEDOT:Sulf) as a model system. In addition to repeated on/off switching of the polymeric nanoantennas, the concept enables gradual electrical tuning of the nano-optical response, which was found to be rela...
Active plasmonic nanostructures with tunable resonances promise to enable smart materials with multi...
Control of the surface plasmon resonance (SPR) enhanced light transmission through array of nanohole...
Anti-reflective surfaces are of great interest for optical devices, sensing, photovoltaics, and phot...
Nanostructures of conventional metals offer manipulation of light at the nanoscale but are largely l...
Optical nanoantennas based on organic plasmonics are promising for their higher degree of tunability...
I will present our recent research showing that organic conducting polymers can be used as a new typ...
Intrinsically conducting polymers forms a category of doped conjugated polymers that can conduct ele...
Dynamic control of structural colors across the visible spectrum with high brightness has proven to ...
Electrically tunable metasurfaces and interrelated nanofabrication techniques are essential for meta...
We report an experimental demonstration of electrical tuning of plasmon resonances of optical nanopa...
International audienceHerein, we report the variation of localized surface plasmon resonance (LSPR) ...
We present a plasmon-active hybrid nanomaterial design with electrochemical tunability of the locali...
The integration of inorganic photonic nanostructures with organic materials opens new possibilities ...
The electrically driven optical performance modulation of the plasmonic nanostructure by conductive ...
Conjugated polymers are promising material candidates for many future applications in flexible displ...
Active plasmonic nanostructures with tunable resonances promise to enable smart materials with multi...
Control of the surface plasmon resonance (SPR) enhanced light transmission through array of nanohole...
Anti-reflective surfaces are of great interest for optical devices, sensing, photovoltaics, and phot...
Nanostructures of conventional metals offer manipulation of light at the nanoscale but are largely l...
Optical nanoantennas based on organic plasmonics are promising for their higher degree of tunability...
I will present our recent research showing that organic conducting polymers can be used as a new typ...
Intrinsically conducting polymers forms a category of doped conjugated polymers that can conduct ele...
Dynamic control of structural colors across the visible spectrum with high brightness has proven to ...
Electrically tunable metasurfaces and interrelated nanofabrication techniques are essential for meta...
We report an experimental demonstration of electrical tuning of plasmon resonances of optical nanopa...
International audienceHerein, we report the variation of localized surface plasmon resonance (LSPR) ...
We present a plasmon-active hybrid nanomaterial design with electrochemical tunability of the locali...
The integration of inorganic photonic nanostructures with organic materials opens new possibilities ...
The electrically driven optical performance modulation of the plasmonic nanostructure by conductive ...
Conjugated polymers are promising material candidates for many future applications in flexible displ...
Active plasmonic nanostructures with tunable resonances promise to enable smart materials with multi...
Control of the surface plasmon resonance (SPR) enhanced light transmission through array of nanohole...
Anti-reflective surfaces are of great interest for optical devices, sensing, photovoltaics, and phot...