We have fabricated and characterised the optical properties of solution processed randomly distributed gold nanoparticle plasmonic arrays that are coated with a thin-film fluorescent dye. Three times enhancement in the emission intensity of the fluorescent dye Pyridine 2 has been observed. Our results are further supported by finite difference time domain simulations that predicted up to 7 times enhancements in the emission intensity as a result of the coupling between the molecular dipoles and the confined field in the underlying plasmonic array. Our results demonstrate the potential of using such structures in organic light emitting devices and chemical and bio-sensing applications
Plasmonic particle arrays have remarkable optical properties originating from their collective behav...
PolyU Library Call No.: [THS] LG51 .H577M AP 2016 Heviii, 119 pages :color illustrationsLanthanide-d...
\u3cp\u3eThe surface plasmon modes of metal nanoparticles provide a way to efficiently enhance the e...
We have fabricated and characterised the optical properties of solution processed randomly distribut...
Optical nanoantennas are very efficient for manipulating and controlling light. These nanoantennas s...
We perform time-resolved fluorescence spectroscopy on clusters of plasmonic nanoantennas covered wit...
The present work focuses on the modification of spontaneous emission of fluorescent emitters using m...
Noble metal nanostructures are well-known for their ability to increase the efficiency of different ...
Localized surface plasmon resonances excited in metallic nanoparticles confine and enhance electroma...
Enhanced fluorescence is observed from dye molecules interacting with optical nanoantenna arrays. El...
In this work, we performed a systematic study on a hybrid plasmonic system to elucidate a new insigh...
We demonstrate an enhanced and tailor-made directional emission of light-emitting devices using nano...
Plasmonic particle arrays have remarkable optical properties originating from their collective behav...
Plasmonic coupling of metallic nanoparticles and adjacent pigments can dramatically increase the bri...
The enhancement of fluorescence that can result from the proximity of fluorophores to metallic nanop...
Plasmonic particle arrays have remarkable optical properties originating from their collective behav...
PolyU Library Call No.: [THS] LG51 .H577M AP 2016 Heviii, 119 pages :color illustrationsLanthanide-d...
\u3cp\u3eThe surface plasmon modes of metal nanoparticles provide a way to efficiently enhance the e...
We have fabricated and characterised the optical properties of solution processed randomly distribut...
Optical nanoantennas are very efficient for manipulating and controlling light. These nanoantennas s...
We perform time-resolved fluorescence spectroscopy on clusters of plasmonic nanoantennas covered wit...
The present work focuses on the modification of spontaneous emission of fluorescent emitters using m...
Noble metal nanostructures are well-known for their ability to increase the efficiency of different ...
Localized surface plasmon resonances excited in metallic nanoparticles confine and enhance electroma...
Enhanced fluorescence is observed from dye molecules interacting with optical nanoantenna arrays. El...
In this work, we performed a systematic study on a hybrid plasmonic system to elucidate a new insigh...
We demonstrate an enhanced and tailor-made directional emission of light-emitting devices using nano...
Plasmonic particle arrays have remarkable optical properties originating from their collective behav...
Plasmonic coupling of metallic nanoparticles and adjacent pigments can dramatically increase the bri...
The enhancement of fluorescence that can result from the proximity of fluorophores to metallic nanop...
Plasmonic particle arrays have remarkable optical properties originating from their collective behav...
PolyU Library Call No.: [THS] LG51 .H577M AP 2016 Heviii, 119 pages :color illustrationsLanthanide-d...
\u3cp\u3eThe surface plasmon modes of metal nanoparticles provide a way to efficiently enhance the e...