Literature DB >> 24588185

Exploring size and state dynamics in CdSe quantum dots using two-dimensional electronic spectroscopy.

Justin R Caram1, Haibin Zheng1, Peter D Dahlberg2, Brian S Rolczynski1, Graham B Griffin1, Dmitriy S Dolzhnikov3, Dmitri V Talapin3, Gregory S Engel1.   

Abstract

Development of optoelectronic technologies based on quantum dots depends on measuring, optimizing, and ultimately predicting charge carrier dynamics in the nanocrystal. In such systems, size inhomogeneity and the photoexcited population distribution among various excitonic states have distinct effects on electron and hole relaxation, which are difficult to distinguish spectroscopically. Two-dimensional electronic spectroscopy can help to untangle these effects by resolving excitation energy and subsequent nonlinear response in a single experiment. Using a filament-generated continuum as a pump and probe source, we collect two-dimensional spectra with sufficient spectral bandwidth to follow dynamics upon excitation of the lowest three optical transitions in a polydisperse ensemble of colloidal CdSe quantum dots. We first compare to prior transient absorption studies to confirm excitation-state-dependent dynamics such as increased surface-trapping upon excitation of hot electrons. Second, we demonstrate fast band-edge electron-hole pair solvation by ligand and phonon modes, as the ensemble relaxes to the photoluminescent state on a sub-picosecond time-scale. Third, we find that static disorder due to size polydispersity dominates the nonlinear response upon excitation into the hot electron manifold; this broadening mechanism stands in contrast to that of the band-edge exciton. Finally, we demonstrate excitation-energy dependent hot-carrier relaxation rates, and we describe how two-dimensional electronic spectroscopy can complement other transient nonlinear techniques.

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Year:  2014        PMID: 24588185      PMCID: PMC3977796          DOI: 10.1063/1.4865832

Source DB:  PubMed          Journal:  J Chem Phys        ISSN: 0021-9606            Impact factor:   3.488


  40 in total

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  8 in total

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2.  Persistent Inter-Excitonic Quantum Coherence in CdSe Quantum Dots.

Authors:  Justin R Caram; Haibin Zheng; Peter D Dahlberg; Brian S Rolczynski; Graham B Griffin; Andrew F Fidler; Dmitriy S Dolzhnikov; Dmitri V Talapin; Gregory S Engel
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  8 in total

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