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Time-resolved photoluminescence spectroscopy of ligand-capped PbS nanocrystals
Authors:Warner Jamie H  Thomsen Elizabeth  Watt Andrew R  Heckenberg Norman R  Rubinsztein-Dunlop Halina
Affiliation:Center for Quantum Computer Technology, School of Physical Sciences, University of Queensland, QLD 4072, Australia.
Abstract:PbS nanocrystals are synthesized using colloidal techniques and have their surfaces capped with oleic acid. The absorption band edge of the PbS nanocrystals is tuned between 900 and 580?nm. The PbS nanocrystals exhibit tuneable photoluminescence with large non-resonant Stokes shifts of up to 500?meV. The magnitude of the Stokes shift is found to be dependent upon the size of PbS nanocrystals. Time-resolved photoluminescence spectroscopy of the PbS nanocrystals reveals that the photoluminescence has an extraordinarily long lifetime of 1?μs. This long fluorescence lifetime is attributed to the effect of dielectric screening similar to that observed in other IV-VI semiconductor nanocrystals.
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