4.8 Article

Temporary Charge Carrier Separation Dominates the Photoluminescence Decay Dynamics of Colloidal CdSe Nanoplatelets

Journal

NANO LETTERS
Volume 16, Issue 3, Pages 2047-2053

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/acs.nanolett.6b00053

Keywords

Colloidal nanoplatelets; photoluminescence decay; exciton recombination; charge carrier trapping

Funding

  1. research program of the Stichting voor Fundamenteel Onderzoek der Materie (FOM)
  2. Nederlandse Organisatie voor Wetenschappelijk Onderzoek (NWO)

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Luminescent colloidal CdSe nanoplatelets with atomically defined thicknesses have recently been developed, and their potential for various applications has been shown. To understand their special properties, experiments have until now focused on the relatively short time scales of at most a few nanoseconds. Here, we measure the photoluminescence decay dynamics of colloidal nanoplatelets on time scales up to tens of microseconds. The excited state dynamics are found to be dominated by the slow (mu s) dynamics of temporary exciton storage in a charge-separated state, previously overlooked. We study the processes of charge carrier separation and exciton recovery in pure CdSe nanoplatelets as well as in core-crown and core-shell CdSe/CdS nanoplatelets with high ensemble quantum yields of 50%, and discuss the implications. Our work highlights the importance of reversible charge carrier trapping and experiments over a wide range of time scales for the understanding of colloidal nanoemitters in general and nanoplatelets in particular.

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