Blinking suppression and intensity recurrences in single CdSe-oligo(phenylene vinylene) nanostructures: experiment and kinetic model

Early, K T and McCarthy, K D and Hammer, N I and Odoi, M Y and Tangirala, R and Emrick, T and Barnes, M D. (2007) Blinking suppression and intensity recurrences in single CdSe-oligo(phenylene vinylene) nanostructures: experiment and kinetic model. Nanotechnology, 18 (42). p. 424027. ISSN 0957-4484

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Official URL: http://dx.doi.org/10.1088/0957-4484/18/42/424027

Abstract

We report time-resolved single molecule fluorescence imaging of individual CdSe quantum dots that are functionalized with oligomeric conjugated organic ligands. The fluorescence intensity trajectories from these composite nanostructures display both a strong degree of blinking suppression and intensity fluctuations with characteristic recurrence times on the order of 10–60 s. In addition, fluorescence decay rate measurements of individual hybrid nanostructures indicate significantly modified non-radiative quantum dot decay rates relative to conventional ZnS-capped CdSe quantum dots. We show that a modified diffusive reaction coordinate model with slow fluctuations in quantum dot electron energies (1Se, 1Pe) can reproduce the experimentally observed behaviour.

Item Type:Article
InterNano Taxonomy:Nanoscale Objects and Nanostructured Materials > Nanoparticles > Nanospheres
Nanoscale Objects and Nanostructured Materials > Nanoparticles > Quantum confinement
Nanomanufacturing Characterization Techniques > Other Characterization Techniques > Laser induced fluorescence (LIF)
Collections:Nanomanufacturing Research Collection
ID Code:262
Deposited By:Moureen Kemei
Deposited On:08 Feb 2010 10:49
Last Modified:08 Feb 2010 10:49

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