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Anomalous Size-Dependent Decay of Low-Energy Luminescence from PbS Quantum Dots in Colloidal Solution
107
Citations
38
References
2012
Year
Decay TimeOptical MaterialsEngineeringColloidal NanocrystalsLow-energy LuminescenceChemistryLuminescence PropertySemiconductorsTransient Luminescence SpectroscopyQuantum DotsPbs Quantum DotsMaterials ScienceQuantum SciencePhotoluminescencePhysicsNanotechnologyOptoelectronic MaterialsAnomalous Size-dependent DecayNanocrystalline MaterialNanophysicsNanomaterialsNatural SciencesApplied Physics
We report on an anomalous size dependence of the room-temperature photoluminescence decay time from the lowest-energy state of PbS quantum dots in colloidal solution, which was found using the transient luminescence spectroscopy. The observed 10-fold reduction in the decay time (from ~2.5 to 0.25 μs) with the increase in the quantum dots' diameter is explained by the existence of phonon-induced transitions between the in-gap state-whose energy drastically depends on the diameter-and the fundamental state of the quantum dots.
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