Publication | Closed Access
Large Enhancement of Fluorescence Efficiency from CdSe/ZnS Quantum Dots Induced by Resonant Coupling to Spatially Controlled Surface Plasmons
353
Citations
17
References
2005
Year
Large EnhancementPlasmonicsEngineeringOverall Fluorescence EfficiencyMetal NanoparticlesNanomaterialsNanotechnologySemiconductor Core-shellResonant CouplingApplied PhysicsQuantum DotsNanoengineered Fluorescent ResponseColloidal NanocrystalsNanofabricationChemistryOptoelectronicsFluorescence EfficiencyBiophysics
Nanoengineered fluorescent response is reported from semiconductor core-shell (CdSe/ZnS) quantum dots in proximity to the surface plasmon polariton field of periodic Ag nanoparticle arrays. Tuning the surface plasmon polariton resonance to the quantum dot exciton emission band results in an enhancement of up to approximately 50-fold in the overall fluorescence efficiency, in a design where each Ag nanoparticle is interconnected by a continuous Ag thin film. Propagating modes of surface plasmon resonances have a direct impact on the fluorescence enhancement.
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