Interactions between fluorephores and surface plasmon was investigated by a custom-built fluorescence lifetime system. Gold nanoparticle with double-stranded DNA on the surface was utilized to exactly control the distance between fluorephores and the nanoparticle. We calculated surface plasmon-induced changes in the radiative decay rate constant and the quenching rate constant. The results revealed that the distance between the fluorephore and the nanoparticle strongly affected the radiative decay rate and the quenching rate. With an increase in the distance, the radiative decay rate decreased while the quenching rate increased. This suggests that the distance between fluorephores and surface plasmon plays an important role in fluorescence ...
The surface plasmon modes of metal nanoparticles provide a way to efficiently enhance the excitation...
Gold nanoparticles and nearby fluorophores interact <i>via</i> electromagnetic coupling upon light e...
The surface plasmon modes of metal nanoparticles provide a way to efficiently enhance the excitation...
Using stoichiometrically controlled 1:1 functionalization of gold nanoparticles with fluorescent dye...
Using stoichiometrically controlled 1:1 functionalization of gold nanoparticles with fluorescent dye...
Using stoichiometrically controlled 1:1 functionalization of gold nanoparticles with fluorescent dye...
Using stoichiometrically controlled 1: 1 functionalization of gold nanoparticles with fluorescent dy...
We present for the first time experimental evidence of fluorescence lifetime enhancement of organic ...
We present for the first time experimental evidence of fluorescence lifetime enhancement of organic ...
We combine interferometric detection of single gold nanoparticles, single molecule microscopy, and f...
The emission intensity of fluorophore molecule may change in presence of strong plasmon field induce...
The emission intensity of fluorophore molecule may change in presence of strong plasmon field induce...
The surface plasmon modes of metal nanoparticles provide a way to efficiently enhance the excitation...
The surface plasmon modes of metal nanoparticles provide a way to efficiently enhance the excitation...
Plasmonic nanoparticles can strongly interact with adjacent fluorophores, resulting in plasmon-enha...
The surface plasmon modes of metal nanoparticles provide a way to efficiently enhance the excitation...
Gold nanoparticles and nearby fluorophores interact <i>via</i> electromagnetic coupling upon light e...
The surface plasmon modes of metal nanoparticles provide a way to efficiently enhance the excitation...
Using stoichiometrically controlled 1:1 functionalization of gold nanoparticles with fluorescent dye...
Using stoichiometrically controlled 1:1 functionalization of gold nanoparticles with fluorescent dye...
Using stoichiometrically controlled 1:1 functionalization of gold nanoparticles with fluorescent dye...
Using stoichiometrically controlled 1: 1 functionalization of gold nanoparticles with fluorescent dy...
We present for the first time experimental evidence of fluorescence lifetime enhancement of organic ...
We present for the first time experimental evidence of fluorescence lifetime enhancement of organic ...
We combine interferometric detection of single gold nanoparticles, single molecule microscopy, and f...
The emission intensity of fluorophore molecule may change in presence of strong plasmon field induce...
The emission intensity of fluorophore molecule may change in presence of strong plasmon field induce...
The surface plasmon modes of metal nanoparticles provide a way to efficiently enhance the excitation...
The surface plasmon modes of metal nanoparticles provide a way to efficiently enhance the excitation...
Plasmonic nanoparticles can strongly interact with adjacent fluorophores, resulting in plasmon-enha...
The surface plasmon modes of metal nanoparticles provide a way to efficiently enhance the excitation...
Gold nanoparticles and nearby fluorophores interact <i>via</i> electromagnetic coupling upon light e...
The surface plasmon modes of metal nanoparticles provide a way to efficiently enhance the excitation...