Inhomogeneous Broadening of the Exciton Band in Optical Absorption Spectra of InP/ZnS Nanocrystals

In this work, we have simulated the processes of broadening the first exciton band in optical absorption spectra (OA) for InP/ZnS ensembles of colloidal quantum dots (QDs). A phenomenological model has been proposed that takes into account the effects of the exciton−phonon interaction, and...

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Main Authors: Sergey S. Savchenko, Ilya A. Weinstein
Format: Article
Language:English
Published: MDPI AG 2019-05-01
Series:Nanomaterials
Subjects:
Online Access:https://www.mdpi.com/2079-4991/9/5/716
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spelling doaj-a5d4f5e4d50b405db931ce0c678a87af2020-11-25T01:33:14ZengMDPI AGNanomaterials2079-49912019-05-019571610.3390/nano9050716nano9050716Inhomogeneous Broadening of the Exciton Band in Optical Absorption Spectra of InP/ZnS NanocrystalsSergey S. Savchenko0Ilya A. Weinstein1NANOTECH Centre, Ural Federal University, 19 Mira str., Ekaterinburg 620002, RussiaNANOTECH Centre, Ural Federal University, 19 Mira str., Ekaterinburg 620002, RussiaIn this work, we have simulated the processes of broadening the first exciton band in optical absorption spectra (OA) for InP/ZnS ensembles of colloidal quantum dots (QDs). A phenomenological model has been proposed that takes into account the effects of the exciton−phonon interaction, and allows one to analyze the influence of the static and dynamic types of atomic disorder on the temperature changes in the spectral characteristics in question. To vary the degree of static disorder in the model system, we have used a parameter δ, which characterizes the QD dispersion in size over the ensemble. We have also calculated the temperature shifts of the maxima and changes in the half-width for the exciton peaks in single nanocrystals (δ = 0), as well as for the integrated OA bands in the QD ensembles with different values of δ = 0.6−17%. The simulation results and the OA spectra data measured for InP/ZnS nanocrystals of 2.1 nm (δ = 11.1%) and 2.3 nm (δ = 17.3%), are in good mutual agreement in the temperature range of 6.5 K−RT. It has been shown that the contribution of static disorder to the observed inhomogeneous broadening of the OA bands for the QDs at room temperature exceeds 90%. The computational experiments performed indicate that the temperature shift of the maximum for the integrated OA band coincides with that for the exciton peak in a single nanocrystal. In this case, a reliable estimate of the parameters of the fundamental exciton−phonon interaction can be made. Simultaneously, the values of the specified parameters, calculated from the temperature broadening of the OA spectra, can be significantly different from the true ones due to the effects of static atomic disorder in real QD ensembles.https://www.mdpi.com/2079-4991/9/5/716colloidal quantum dotscore/shellexciton absorptionhalf-widthensembleinhomogeneous and homogeneous broadeningstatic and dynamic disorder
collection DOAJ
language English
format Article
sources DOAJ
author Sergey S. Savchenko
Ilya A. Weinstein
spellingShingle Sergey S. Savchenko
Ilya A. Weinstein
Inhomogeneous Broadening of the Exciton Band in Optical Absorption Spectra of InP/ZnS Nanocrystals
Nanomaterials
colloidal quantum dots
core/shell
exciton absorption
half-width
ensemble
inhomogeneous and homogeneous broadening
static and dynamic disorder
author_facet Sergey S. Savchenko
Ilya A. Weinstein
author_sort Sergey S. Savchenko
title Inhomogeneous Broadening of the Exciton Band in Optical Absorption Spectra of InP/ZnS Nanocrystals
title_short Inhomogeneous Broadening of the Exciton Band in Optical Absorption Spectra of InP/ZnS Nanocrystals
title_full Inhomogeneous Broadening of the Exciton Band in Optical Absorption Spectra of InP/ZnS Nanocrystals
title_fullStr Inhomogeneous Broadening of the Exciton Band in Optical Absorption Spectra of InP/ZnS Nanocrystals
title_full_unstemmed Inhomogeneous Broadening of the Exciton Band in Optical Absorption Spectra of InP/ZnS Nanocrystals
title_sort inhomogeneous broadening of the exciton band in optical absorption spectra of inp/zns nanocrystals
publisher MDPI AG
series Nanomaterials
issn 2079-4991
publishDate 2019-05-01
description In this work, we have simulated the processes of broadening the first exciton band in optical absorption spectra (OA) for InP/ZnS ensembles of colloidal quantum dots (QDs). A phenomenological model has been proposed that takes into account the effects of the exciton−phonon interaction, and allows one to analyze the influence of the static and dynamic types of atomic disorder on the temperature changes in the spectral characteristics in question. To vary the degree of static disorder in the model system, we have used a parameter δ, which characterizes the QD dispersion in size over the ensemble. We have also calculated the temperature shifts of the maxima and changes in the half-width for the exciton peaks in single nanocrystals (δ = 0), as well as for the integrated OA bands in the QD ensembles with different values of δ = 0.6−17%. The simulation results and the OA spectra data measured for InP/ZnS nanocrystals of 2.1 nm (δ = 11.1%) and 2.3 nm (δ = 17.3%), are in good mutual agreement in the temperature range of 6.5 K−RT. It has been shown that the contribution of static disorder to the observed inhomogeneous broadening of the OA bands for the QDs at room temperature exceeds 90%. The computational experiments performed indicate that the temperature shift of the maximum for the integrated OA band coincides with that for the exciton peak in a single nanocrystal. In this case, a reliable estimate of the parameters of the fundamental exciton−phonon interaction can be made. Simultaneously, the values of the specified parameters, calculated from the temperature broadening of the OA spectra, can be significantly different from the true ones due to the effects of static atomic disorder in real QD ensembles.
topic colloidal quantum dots
core/shell
exciton absorption
half-width
ensemble
inhomogeneous and homogeneous broadening
static and dynamic disorder
url https://www.mdpi.com/2079-4991/9/5/716
work_keys_str_mv AT sergeyssavchenko inhomogeneousbroadeningoftheexcitonbandinopticalabsorptionspectraofinpznsnanocrystals
AT ilyaaweinstein inhomogeneousbroadeningoftheexcitonbandinopticalabsorptionspectraofinpznsnanocrystals
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