Quantifying the optical extinction cross section of a plasmonic nanoparticle has recently emerged as a powerful means to characterize the nanoparticle morphologically, i.e., to determine its size and shape with a precision comparable to electron microscopy while using a simple optical microscope. In this context, a critical piece of information to solve the inverse problem, namely, calculating the particle geometry from the measured cross section, is the material permittivity. For bulk gold, many datasets have been reported in the literature, raising the question of which one is more adequate to describe specific systems at the nanoscale. Another question is how the nanoparticle interface, not present in the bulk material, affects its permi...
Modification of the plasmonic response of a metal nano-object due to interaction with a substrate is...
The optical properties of metal nanoparticles have garnered researchers ’ interests, since 1800s, ow...
On a nanometric scale, noble metal particles have fascinating optical properties. They are dominated...
Quantifying the optical extinction cross section of a plasmonic nanoparticle has recently emerged as...
This paper reports on physical principles and the relations between extinction cross section and ge...
Optical absorption spectroscopy of a single metal nanoparticle is used to characterize its propertie...
Plasmon rulers relate the shift of resonance wavelength, λl, of gold agglomerates to the average dis...
Quantifying the optical extinction cross section of a plasmonic nanoparticle has recently emerged as...
We present a wide-field imaging technique recently developed by us to measure quantitatively the opt...
International audienceA modified effective medium theory (MEMT) is introduced to determine morpholog...
The spectral characteristics (wavelength and line width) and the optical extinction cross-section of...
The spectral characteristics (wavelength and line width) and the optical extinction cross-section of...
The measurement of optical extinction is used to determine the size of nearly spherical gold nanopar...
Copyright © 2019 American Chemical Society. Metallic nanoparticle solutions are routinely characteri...
Owing to unique size- and shape- dependent localized surface plasmon resonance (LSPR) of noble metal...
Modification of the plasmonic response of a metal nano-object due to interaction with a substrate is...
The optical properties of metal nanoparticles have garnered researchers ’ interests, since 1800s, ow...
On a nanometric scale, noble metal particles have fascinating optical properties. They are dominated...
Quantifying the optical extinction cross section of a plasmonic nanoparticle has recently emerged as...
This paper reports on physical principles and the relations between extinction cross section and ge...
Optical absorption spectroscopy of a single metal nanoparticle is used to characterize its propertie...
Plasmon rulers relate the shift of resonance wavelength, λl, of gold agglomerates to the average dis...
Quantifying the optical extinction cross section of a plasmonic nanoparticle has recently emerged as...
We present a wide-field imaging technique recently developed by us to measure quantitatively the opt...
International audienceA modified effective medium theory (MEMT) is introduced to determine morpholog...
The spectral characteristics (wavelength and line width) and the optical extinction cross-section of...
The spectral characteristics (wavelength and line width) and the optical extinction cross-section of...
The measurement of optical extinction is used to determine the size of nearly spherical gold nanopar...
Copyright © 2019 American Chemical Society. Metallic nanoparticle solutions are routinely characteri...
Owing to unique size- and shape- dependent localized surface plasmon resonance (LSPR) of noble metal...
Modification of the plasmonic response of a metal nano-object due to interaction with a substrate is...
The optical properties of metal nanoparticles have garnered researchers ’ interests, since 1800s, ow...
On a nanometric scale, noble metal particles have fascinating optical properties. They are dominated...