Gold nanorods (Au NRs) and coupled gold nanospheres (Au NSs) are known to display strong two-photon photoluminescence (TPPL). Here two-pulse emission modulation (TPEM) and pump–probe measurements were performed on Au NRs and coupled Au NSs to understand their excitation mechanisms. The TPEM cross contributions of Au NRs and coupled Au NSs showed much slower decay compared with a two-photon absorption organic dye. Their decay time constants (4.0 ps for Au NRs and 3.1 ps for coupled Au NSs) match well with the lifetimes of intermediate states measured from pump–probe experiments. These results support the fact that strong TPPL in Au NRs and coupled Au NSs arises from two sequential one-photon absorption steps involving real intermediate state...
Plasmon enhancement of optical properties is both fundamentally important and appealing for many bio...
Noble metal nanoparticles exhibit interesting two-photon photoluminescence (2PPL) property which is ...
© 2015 American Chemical Society. Metallic nanorod antennas can be considered as an analogue to clas...
Gold nanorods (Au NRs) have been widely exploited for various biomedical applications due to their s...
The two-photon luminescence (TPL) of gold nanoparticles (NP) was shown to result from the excitation...
Aggregated metal nanoparticles have been known to display significantly enhanced two-photon photolum...
We introduce the possibility of performing two-pulse correlation measurements in order to probe the ...
Plasmon coupling is known to enhance the two-photon excitation photoluminescence of metal nanopartic...
International audienceThe origin of the two-photon luminescence in colloidal gold nanorods, investig...
Gold nanoparticles are quite popular as contrast agents for optical microscopy. Their strong linear ...
International audienceThe two-photon luminescence (TPL) turn-off in small single gold nanorods (GNR)...
Two-photon photoluminescence (TPPL) from gold nanostructures is becoming one of the most relevant to...
International audienceThe two-photon luminescence (TPL) of small 10 nm x 40 nm colloidal gold nanoro...
Gold nanorods excited at 830 nm on a far-field laser-scanning microscope produced strong two-photon ...
Plasmon enhancement of optical properties is both fundamentally important and appealing for many bio...
Noble metal nanoparticles exhibit interesting two-photon photoluminescence (2PPL) property which is ...
© 2015 American Chemical Society. Metallic nanorod antennas can be considered as an analogue to clas...
Gold nanorods (Au NRs) have been widely exploited for various biomedical applications due to their s...
The two-photon luminescence (TPL) of gold nanoparticles (NP) was shown to result from the excitation...
Aggregated metal nanoparticles have been known to display significantly enhanced two-photon photolum...
We introduce the possibility of performing two-pulse correlation measurements in order to probe the ...
Plasmon coupling is known to enhance the two-photon excitation photoluminescence of metal nanopartic...
International audienceThe origin of the two-photon luminescence in colloidal gold nanorods, investig...
Gold nanoparticles are quite popular as contrast agents for optical microscopy. Their strong linear ...
International audienceThe two-photon luminescence (TPL) turn-off in small single gold nanorods (GNR)...
Two-photon photoluminescence (TPPL) from gold nanostructures is becoming one of the most relevant to...
International audienceThe two-photon luminescence (TPL) of small 10 nm x 40 nm colloidal gold nanoro...
Gold nanorods excited at 830 nm on a far-field laser-scanning microscope produced strong two-photon ...
Plasmon enhancement of optical properties is both fundamentally important and appealing for many bio...
Noble metal nanoparticles exhibit interesting two-photon photoluminescence (2PPL) property which is ...
© 2015 American Chemical Society. Metallic nanorod antennas can be considered as an analogue to clas...