The enhancement of surface enhanced raman scattering of the hybrid Au–Ag triangular nanostructure arrays via localised surface plasmon resonance is systematically investigated. The hybrid nanostructure can prevent the pure silver nanoparticles from oxidation and the stability of Au–Ag nanoparticles compared with non-coated Ag nanoparticles has been verified. Discrete dipole approximation calculated results show the size of the nanoparticle has an important effect on localised surface plasmon resonance of the hybrid nanostructure. Nanosphere lithography is used to fabricate the hybrid nanoparticle arrays with different sizes of nanoparticle. Both theoretical calculations and experimental results show that with an increase in size of the nano...
Localized and periodic optical modes co-exist in plasmonic nanohole arrays leading to a unique mix o...
ABSTRACT: In the ongoing search for ever-brighter surface-enhanced Raman scattering (SERS) nanoprobe...
Manipulating light on the nanometer scale is a challenging topic not only from a fundamental point o...
Noble metal nanoparticles (NPs) such as silver (Ag) and gold (Au) have unique plasmonic properties t...
Studies comparing the effect of adding two different nanoparticle compositions on the plasmonic prop...
The hybrid Au-Ag triangular nanoparticles were proposed for the purpose of biosensing. To construct ...
A Ag nanostructure was put forward in this paper. There are two types of Ag nanoparticles, spherical...
With the rapid development of nanoscience and nanotechnology, surface plasmon photonics using metal ...
In plasmon-based devices, the choice of metal for the nanostructures often leads to an undesirable t...
oble metal nanoparticles are exten-sively used as substrates for surface-enhanced spectroscopy appli...
In the ongoing search for ever-brighter surface-enhanced Raman scattering (SERS) nanoprobes, gold na...
The effect of chromium interlayer thickness on optical properties of array of hybrid Au-Ag triangula...
International audienceThe dependence of the Surface Enhanced Raman Scattering (SERS) by gold nanopar...
Electromagnetic theory predicts that the optimal value of the localized plasmon resonance (LPR) wave...
Surface-enhanced Raman scattering is an ideal tool for identifying molecules from the “fingerprint” ...
Localized and periodic optical modes co-exist in plasmonic nanohole arrays leading to a unique mix o...
ABSTRACT: In the ongoing search for ever-brighter surface-enhanced Raman scattering (SERS) nanoprobe...
Manipulating light on the nanometer scale is a challenging topic not only from a fundamental point o...
Noble metal nanoparticles (NPs) such as silver (Ag) and gold (Au) have unique plasmonic properties t...
Studies comparing the effect of adding two different nanoparticle compositions on the plasmonic prop...
The hybrid Au-Ag triangular nanoparticles were proposed for the purpose of biosensing. To construct ...
A Ag nanostructure was put forward in this paper. There are two types of Ag nanoparticles, spherical...
With the rapid development of nanoscience and nanotechnology, surface plasmon photonics using metal ...
In plasmon-based devices, the choice of metal for the nanostructures often leads to an undesirable t...
oble metal nanoparticles are exten-sively used as substrates for surface-enhanced spectroscopy appli...
In the ongoing search for ever-brighter surface-enhanced Raman scattering (SERS) nanoprobes, gold na...
The effect of chromium interlayer thickness on optical properties of array of hybrid Au-Ag triangula...
International audienceThe dependence of the Surface Enhanced Raman Scattering (SERS) by gold nanopar...
Electromagnetic theory predicts that the optimal value of the localized plasmon resonance (LPR) wave...
Surface-enhanced Raman scattering is an ideal tool for identifying molecules from the “fingerprint” ...
Localized and periodic optical modes co-exist in plasmonic nanohole arrays leading to a unique mix o...
ABSTRACT: In the ongoing search for ever-brighter surface-enhanced Raman scattering (SERS) nanoprobe...
Manipulating light on the nanometer scale is a challenging topic not only from a fundamental point o...