We have carried out an experiment on a flexible polymeric substrate, coated with a monolayer of gold nanoparticles, which demonstrates how the combined effect of nanoparticle growth and stretching influences the average normalized gap between particles, thus modifying the extinction spectra of the sample. The study paves the way for the realization of a plasmonic strain sensor based on the plasmonic coupling of gold nanoparticles deposited onto elastomeric films: application of a mechanical stretching induces a change of colour of the device and a fine control of the applied strain allows a continuous tuning of the colour
Plasmonic nanostructures are important building blocks in modern nanoscience and nanotechnology. Sig...
A new strategy to produce easily scalable patterned array of gold nanoparticles on flexible substrat...
The plasmon resonance spectral peak of a gold spherical nanoparticle (NP) will shift when the NP sha...
International audienceWe have carried out an experiment on a flexible polymeric substrate, coated wi...
International audienceThis article exposes the beginnings of a new field which could be named as “pl...
A simple method is presented to control and trigger the coupling between plasmonic particles using b...
We report an easy, scalable and low cost interfacial self-assembly approach to fabricate dense metal...
Skin-like optoelectronic sensors can have a wide range of technical applications ranging from wearab...
Almost all appliances are prone to mechanical stress in one form or the other. An increasing depende...
The ellipsometric spectra (Ψ and Δ) of coupled metallic nanoparticles on a stretchable substrate hav...
We report the fabrication and characterization of stretchable nanocomposite films with mechanically ...
The organization of plasmonic nanoparticles (NPs) determines the strength and polarization dependenc...
ABSTRACT We demonstrate a novel way to actively tune surface plasmons by fabricating plasmonic nanos...
The unique and tunable optical properties of metal nanoparticles have attracted intense and sustaine...
This study aimed at introducing thin films exhibiting the localized surface plasmon resonance (LSPR)...
Plasmonic nanostructures are important building blocks in modern nanoscience and nanotechnology. Sig...
A new strategy to produce easily scalable patterned array of gold nanoparticles on flexible substrat...
The plasmon resonance spectral peak of a gold spherical nanoparticle (NP) will shift when the NP sha...
International audienceWe have carried out an experiment on a flexible polymeric substrate, coated wi...
International audienceThis article exposes the beginnings of a new field which could be named as “pl...
A simple method is presented to control and trigger the coupling between plasmonic particles using b...
We report an easy, scalable and low cost interfacial self-assembly approach to fabricate dense metal...
Skin-like optoelectronic sensors can have a wide range of technical applications ranging from wearab...
Almost all appliances are prone to mechanical stress in one form or the other. An increasing depende...
The ellipsometric spectra (Ψ and Δ) of coupled metallic nanoparticles on a stretchable substrate hav...
We report the fabrication and characterization of stretchable nanocomposite films with mechanically ...
The organization of plasmonic nanoparticles (NPs) determines the strength and polarization dependenc...
ABSTRACT We demonstrate a novel way to actively tune surface plasmons by fabricating plasmonic nanos...
The unique and tunable optical properties of metal nanoparticles have attracted intense and sustaine...
This study aimed at introducing thin films exhibiting the localized surface plasmon resonance (LSPR)...
Plasmonic nanostructures are important building blocks in modern nanoscience and nanotechnology. Sig...
A new strategy to produce easily scalable patterned array of gold nanoparticles on flexible substrat...
The plasmon resonance spectral peak of a gold spherical nanoparticle (NP) will shift when the NP sha...