Charge transport in semiconductors assembled from nanocrystal quantum dots

While efficiency of nanocrystal-based devices has improved, charge transport within semiconductors assembled from nanocrystal quantum dots has remained unclear. Here, the authors use ab initio calculations to develop a predictive model for charge transport that also explains the origin of deep elect...

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Autores principales: Nuri Yazdani, Samuel Andermatt, Maksym Yarema, Vasco Farto, Mohammad Hossein Bani-Hashemian, Sebastian Volk, Weyde M. M. Lin, Olesya Yarema, Mathieu Luisier, Vanessa Wood
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Lenguaje:EN
Publicado: Nature Portfolio 2020
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Acceso en línea:https://doaj.org/article/c5ac9aec429b4b2ea4d0a2c12f0c1b59
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spelling oai:doaj.org-article:c5ac9aec429b4b2ea4d0a2c12f0c1b592021-12-02T18:24:49ZCharge transport in semiconductors assembled from nanocrystal quantum dots10.1038/s41467-020-16560-72041-1723https://doaj.org/article/c5ac9aec429b4b2ea4d0a2c12f0c1b592020-06-01T00:00:00Zhttps://doi.org/10.1038/s41467-020-16560-7https://doaj.org/toc/2041-1723While efficiency of nanocrystal-based devices has improved, charge transport within semiconductors assembled from nanocrystal quantum dots has remained unclear. Here, the authors use ab initio calculations to develop a predictive model for charge transport that also explains the origin of deep electronic traps and validate it experimentally.Nuri YazdaniSamuel AndermattMaksym YaremaVasco FartoMohammad Hossein Bani-HashemianSebastian VolkWeyde M. M. LinOlesya YaremaMathieu LuisierVanessa WoodNature PortfolioarticleScienceQENNature Communications, Vol 11, Iss 1, Pp 1-9 (2020)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Nuri Yazdani
Samuel Andermatt
Maksym Yarema
Vasco Farto
Mohammad Hossein Bani-Hashemian
Sebastian Volk
Weyde M. M. Lin
Olesya Yarema
Mathieu Luisier
Vanessa Wood
Charge transport in semiconductors assembled from nanocrystal quantum dots
description While efficiency of nanocrystal-based devices has improved, charge transport within semiconductors assembled from nanocrystal quantum dots has remained unclear. Here, the authors use ab initio calculations to develop a predictive model for charge transport that also explains the origin of deep electronic traps and validate it experimentally.
format article
author Nuri Yazdani
Samuel Andermatt
Maksym Yarema
Vasco Farto
Mohammad Hossein Bani-Hashemian
Sebastian Volk
Weyde M. M. Lin
Olesya Yarema
Mathieu Luisier
Vanessa Wood
author_facet Nuri Yazdani
Samuel Andermatt
Maksym Yarema
Vasco Farto
Mohammad Hossein Bani-Hashemian
Sebastian Volk
Weyde M. M. Lin
Olesya Yarema
Mathieu Luisier
Vanessa Wood
author_sort Nuri Yazdani
title Charge transport in semiconductors assembled from nanocrystal quantum dots
title_short Charge transport in semiconductors assembled from nanocrystal quantum dots
title_full Charge transport in semiconductors assembled from nanocrystal quantum dots
title_fullStr Charge transport in semiconductors assembled from nanocrystal quantum dots
title_full_unstemmed Charge transport in semiconductors assembled from nanocrystal quantum dots
title_sort charge transport in semiconductors assembled from nanocrystal quantum dots
publisher Nature Portfolio
publishDate 2020
url https://doaj.org/article/c5ac9aec429b4b2ea4d0a2c12f0c1b59
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AT vascofarto chargetransportinsemiconductorsassembledfromnanocrystalquantumdots
AT mohammadhosseinbanihashemian chargetransportinsemiconductorsassembledfromnanocrystalquantumdots
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AT weydemmlin chargetransportinsemiconductorsassembledfromnanocrystalquantumdots
AT olesyayarema chargetransportinsemiconductorsassembledfromnanocrystalquantumdots
AT mathieuluisier chargetransportinsemiconductorsassembledfromnanocrystalquantumdots
AT vanessawood chargetransportinsemiconductorsassembledfromnanocrystalquantumdots
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