We present a near-field mapping of electric fields from the individual superspherical and ultrasmooth gold nanoparticles (AuNPs) and artificially assembled AuNP nanostructures by measuring the reconfiguration of an azobenzene-containing polymer(azo-polymer) film. Various configurations of AuNPs and the azo-polymer were studied with atomic force microscopy measurements and calculations. The interference was systematically studied with AuNP dimers of various gap distances and different embedding depth in the polymer film. Finally, we successfully demonstrated the interference of standing waves in artificially assembled plasmonic metasurface. © 2017 American Chemical Society101sciescopu
Single particle microscopy and spectroscopy strategies reveal hidden relationships between the surfa...
We studied the near-field properties of localized surface plasmon resonances in finite linear gold n...
The research reported in this thesis focuses on the high field localisation formed in the nanometric...
cited By 0International audienceThe properties of hybrid plasmonic structures comprising a molecular...
International audienceTetrahedral nanopyramids made of silver and gold over ITO/glass surfaces are f...
A two-fold active control of the plasmonic resonance of randomly distributed gold nanoparticles (GNP...
In this paper we describe the design, fabrication and characterization of gold nano-patches, deposi...
Polymer nanocomposites offer extraordinary promise for the field of composite materials. If the uniq...
The localized surface plasmon resonance (LSPR) spectrum associated with a gold nanoparticle (NP) cou...
Near-field spectrum measurement techniques, including near-field scanning optical microscopy, electr...
Self-assembled nanoparticle (NP) arrays at liquid interfaces provide a unique optical response which...
The near-field contrast formation in spherical nanoparticles and bowtie shaped metallic nanostructur...
The paper reports on 2D plasmonic crystals composed of a hexagonal lattice of polymeric nanopillars ...
The extraordinary properties of reconfigurable soft materials are used to drive the resonance proper...
Plasmonic nanometasurfaces/nanostructures possess strong electromagnetic field enhancement caused by...
Single particle microscopy and spectroscopy strategies reveal hidden relationships between the surfa...
We studied the near-field properties of localized surface plasmon resonances in finite linear gold n...
The research reported in this thesis focuses on the high field localisation formed in the nanometric...
cited By 0International audienceThe properties of hybrid plasmonic structures comprising a molecular...
International audienceTetrahedral nanopyramids made of silver and gold over ITO/glass surfaces are f...
A two-fold active control of the plasmonic resonance of randomly distributed gold nanoparticles (GNP...
In this paper we describe the design, fabrication and characterization of gold nano-patches, deposi...
Polymer nanocomposites offer extraordinary promise for the field of composite materials. If the uniq...
The localized surface plasmon resonance (LSPR) spectrum associated with a gold nanoparticle (NP) cou...
Near-field spectrum measurement techniques, including near-field scanning optical microscopy, electr...
Self-assembled nanoparticle (NP) arrays at liquid interfaces provide a unique optical response which...
The near-field contrast formation in spherical nanoparticles and bowtie shaped metallic nanostructur...
The paper reports on 2D plasmonic crystals composed of a hexagonal lattice of polymeric nanopillars ...
The extraordinary properties of reconfigurable soft materials are used to drive the resonance proper...
Plasmonic nanometasurfaces/nanostructures possess strong electromagnetic field enhancement caused by...
Single particle microscopy and spectroscopy strategies reveal hidden relationships between the surfa...
We studied the near-field properties of localized surface plasmon resonances in finite linear gold n...
The research reported in this thesis focuses on the high field localisation formed in the nanometric...