Design principles for electronic charge transport in solution-processed vertically stacked 2D perovskite quantum wells

Solution-processed two-dimensional perovskite quantum-well-based optoelectronic devices have attracted great research interest but their electrical transport is poorly understood. Tsai et al. reveal that the potential barriers of the quantum wells dominate the transport properties in solar cell devi...

Full description

Bibliographic Details
Main Authors: Hsinhan Tsai, Reza Asadpour, Jean-Christophe Blancon, Constantinos C. Stoumpos, Jacky Even, Pulickel M. Ajayan, Mercouri G. Kanatzidis, Muhammad Ashraful Alam, Aditya D. Mohite, Wanyi Nie
Format: Article
Language:English
Published: Nature Portfolio 2018-05-01
Series:Nature Communications
Online Access:https://doi.org/10.1038/s41467-018-04430-2
_version_ 1818992665119686656
author Hsinhan Tsai
Reza Asadpour
Jean-Christophe Blancon
Constantinos C. Stoumpos
Jacky Even
Pulickel M. Ajayan
Mercouri G. Kanatzidis
Muhammad Ashraful Alam
Aditya D. Mohite
Wanyi Nie
author_facet Hsinhan Tsai
Reza Asadpour
Jean-Christophe Blancon
Constantinos C. Stoumpos
Jacky Even
Pulickel M. Ajayan
Mercouri G. Kanatzidis
Muhammad Ashraful Alam
Aditya D. Mohite
Wanyi Nie
author_sort Hsinhan Tsai
collection DOAJ
description Solution-processed two-dimensional perovskite quantum-well-based optoelectronic devices have attracted great research interest but their electrical transport is poorly understood. Tsai et al. reveal that the potential barriers of the quantum wells dominate the transport properties in solar cell devices.
first_indexed 2024-12-20T20:29:46Z
format Article
id doaj.art-0622b41e343847cfb3bd26af8c429b67
institution Directory Open Access Journal
issn 2041-1723
language English
last_indexed 2024-12-20T20:29:46Z
publishDate 2018-05-01
publisher Nature Portfolio
record_format Article
series Nature Communications
spelling doaj.art-0622b41e343847cfb3bd26af8c429b672022-12-21T19:27:22ZengNature PortfolioNature Communications2041-17232018-05-01911910.1038/s41467-018-04430-2Design principles for electronic charge transport in solution-processed vertically stacked 2D perovskite quantum wellsHsinhan Tsai0Reza Asadpour1Jean-Christophe Blancon2Constantinos C. Stoumpos3Jacky Even4Pulickel M. Ajayan5Mercouri G. Kanatzidis6Muhammad Ashraful Alam7Aditya D. Mohite8Wanyi Nie9Division of Materials Physics and Application, Los Alamos National LaboratorySchool of Electrical and Computer Engineering, Purdue UniversityDivision of Materials Physics and Application, Los Alamos National LaboratoryDepartment of Chemistry, Northwestern UniversityCNRS Institut FOTON — UMR, 6082, Univ Rennes, INSA RennesMaterial Science and Nano Engineering Department, Rice UniversityDepartment of Chemistry, Northwestern UniversitySchool of Electrical and Computer Engineering, Purdue UniversityDivision of Materials Physics and Application, Los Alamos National LaboratoryDivision of Materials Physics and Application, Los Alamos National LaboratorySolution-processed two-dimensional perovskite quantum-well-based optoelectronic devices have attracted great research interest but their electrical transport is poorly understood. Tsai et al. reveal that the potential barriers of the quantum wells dominate the transport properties in solar cell devices.https://doi.org/10.1038/s41467-018-04430-2
spellingShingle Hsinhan Tsai
Reza Asadpour
Jean-Christophe Blancon
Constantinos C. Stoumpos
Jacky Even
Pulickel M. Ajayan
Mercouri G. Kanatzidis
Muhammad Ashraful Alam
Aditya D. Mohite
Wanyi Nie
Design principles for electronic charge transport in solution-processed vertically stacked 2D perovskite quantum wells
Nature Communications
title Design principles for electronic charge transport in solution-processed vertically stacked 2D perovskite quantum wells
title_full Design principles for electronic charge transport in solution-processed vertically stacked 2D perovskite quantum wells
title_fullStr Design principles for electronic charge transport in solution-processed vertically stacked 2D perovskite quantum wells
title_full_unstemmed Design principles for electronic charge transport in solution-processed vertically stacked 2D perovskite quantum wells
title_short Design principles for electronic charge transport in solution-processed vertically stacked 2D perovskite quantum wells
title_sort design principles for electronic charge transport in solution processed vertically stacked 2d perovskite quantum wells
url https://doi.org/10.1038/s41467-018-04430-2
work_keys_str_mv AT hsinhantsai designprinciplesforelectronicchargetransportinsolutionprocessedverticallystacked2dperovskitequantumwells
AT rezaasadpour designprinciplesforelectronicchargetransportinsolutionprocessedverticallystacked2dperovskitequantumwells
AT jeanchristopheblancon designprinciplesforelectronicchargetransportinsolutionprocessedverticallystacked2dperovskitequantumwells
AT constantinoscstoumpos designprinciplesforelectronicchargetransportinsolutionprocessedverticallystacked2dperovskitequantumwells
AT jackyeven designprinciplesforelectronicchargetransportinsolutionprocessedverticallystacked2dperovskitequantumwells
AT pulickelmajayan designprinciplesforelectronicchargetransportinsolutionprocessedverticallystacked2dperovskitequantumwells
AT mercourigkanatzidis designprinciplesforelectronicchargetransportinsolutionprocessedverticallystacked2dperovskitequantumwells
AT muhammadashrafulalam designprinciplesforelectronicchargetransportinsolutionprocessedverticallystacked2dperovskitequantumwells
AT adityadmohite designprinciplesforelectronicchargetransportinsolutionprocessedverticallystacked2dperovskitequantumwells
AT wanyinie designprinciplesforelectronicchargetransportinsolutionprocessedverticallystacked2dperovskitequantumwells