Plasmon coupling is known to enhance the two-photon excitation photoluminescence of metal nanoparticles significantly. Here, Au and Ag nanospheres of different sizes were prepared to systematically investigate the effects of particle size on plasmon coupling enhanced two-photon excitation photoluminescence. An oppositely charged polyelectrolyte, poly(diallyldimethylammonium chloride) (PDDA), was used to induce the coupling of Au and Ag nanospheres. The two-photon excitation photoluminescence enhancement factor was found to first increase and then decrease with the increasing particle size for both Au and Ag nanospheres. Optimum enhancement factors of 25-fold and 14-fold were obtained for coupled 55-nm Au nanospheres and 50-nm Ag nanosphere...
Metallic nanostructures have the potential to modify the anti-Stokes emission of upconverting nanopa...
Metal nanoparticles have recently gained popularity in many research areas due to their nanosize-rel...
One of the most rapidly growing areas of physics and nanotechnology is concerned with plasmonic effe...
Aggregated metal nanoparticles have been known to display significantly enhanced two-photon photolum...
Gold nanorods (Au NRs) and coupled gold nanospheres (Au NSs) are known to display strong two-photon ...
The two-photon luminescence (TPL) of gold nanoparticles (NP) was shown to result from the excitation...
Plasmon enhancement of optical properties is both fundamentally important and appealing for many bio...
2D nanoplasmonic substrates excited in transmission spectroscopy are ideal for several biosensing, m...
Noble metal nanoparticles exhibit interesting two-photon photoluminescence (2PPL) property which is ...
Recent advances in two-photon excited photoluminescence of plasmonic gold nanorods have greatly expa...
International audienceThe origin of the two-photon luminescence in colloidal gold nanorods, investig...
Gold (Au) nanoparticles that display strong two-photon photoluminescence (TPPL) are attractive contr...
Metal-enhanced fluorescence has attracted much attention due to its scientific importance and lots o...
Multi-resonant plasmonic simple geometries like nanocylinders and nanorods are highly interesting fo...
Anisotropic noble metal nanoparticles supporting more than one localized surface plasmon resonance c...
Metallic nanostructures have the potential to modify the anti-Stokes emission of upconverting nanopa...
Metal nanoparticles have recently gained popularity in many research areas due to their nanosize-rel...
One of the most rapidly growing areas of physics and nanotechnology is concerned with plasmonic effe...
Aggregated metal nanoparticles have been known to display significantly enhanced two-photon photolum...
Gold nanorods (Au NRs) and coupled gold nanospheres (Au NSs) are known to display strong two-photon ...
The two-photon luminescence (TPL) of gold nanoparticles (NP) was shown to result from the excitation...
Plasmon enhancement of optical properties is both fundamentally important and appealing for many bio...
2D nanoplasmonic substrates excited in transmission spectroscopy are ideal for several biosensing, m...
Noble metal nanoparticles exhibit interesting two-photon photoluminescence (2PPL) property which is ...
Recent advances in two-photon excited photoluminescence of plasmonic gold nanorods have greatly expa...
International audienceThe origin of the two-photon luminescence in colloidal gold nanorods, investig...
Gold (Au) nanoparticles that display strong two-photon photoluminescence (TPPL) are attractive contr...
Metal-enhanced fluorescence has attracted much attention due to its scientific importance and lots o...
Multi-resonant plasmonic simple geometries like nanocylinders and nanorods are highly interesting fo...
Anisotropic noble metal nanoparticles supporting more than one localized surface plasmon resonance c...
Metallic nanostructures have the potential to modify the anti-Stokes emission of upconverting nanopa...
Metal nanoparticles have recently gained popularity in many research areas due to their nanosize-rel...
One of the most rapidly growing areas of physics and nanotechnology is concerned with plasmonic effe...