In-situ observation of trapped carriers in organic metal halide perovskite films with ultra-fast temporal and ultra-high energetic resolutions

Defect states in perovskites dictate the charge carriers behaviour, thus the ultimate optical and electrical properties. Here, the authors in-situ investigate trapped carrier dynamics in MAPbI3 thin films with ultra-fast temporal and high energetic resolution by means of ultrafast photocurrent spect...

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Autores principales: Kanishka Kobbekaduwa, Shreetu Shrestha, Pan Adhikari, Exian Liu, Lawrence Coleman, Jianbing Zhang, Ying Shi, Yuanyuan Zhou, Yehonadav Bekenstein, Feng Yan, Apparao M. Rao, Hsinhan Tsai, Matthew C. Beard, Wanyi Nie, Jianbo Gao
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Lenguaje:EN
Publicado: Nature Portfolio 2021
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Acceso en línea:https://doaj.org/article/dfc55409c01540369515fb81ab8de5d8
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spelling oai:doaj.org-article:dfc55409c01540369515fb81ab8de5d82021-12-02T13:30:36ZIn-situ observation of trapped carriers in organic metal halide perovskite films with ultra-fast temporal and ultra-high energetic resolutions10.1038/s41467-021-21946-22041-1723https://doaj.org/article/dfc55409c01540369515fb81ab8de5d82021-03-01T00:00:00Zhttps://doi.org/10.1038/s41467-021-21946-2https://doaj.org/toc/2041-1723Defect states in perovskites dictate the charge carriers behaviour, thus the ultimate optical and electrical properties. Here, the authors in-situ investigate trapped carrier dynamics in MAPbI3 thin films with ultra-fast temporal and high energetic resolution by means of ultrafast photocurrent spectroscopy.Kanishka KobbekaduwaShreetu ShresthaPan AdhikariExian LiuLawrence ColemanJianbing ZhangYing ShiYuanyuan ZhouYehonadav BekensteinFeng YanApparao M. RaoHsinhan TsaiMatthew C. BeardWanyi NieJianbo GaoNature PortfolioarticleScienceQENNature Communications, Vol 12, Iss 1, Pp 1-7 (2021)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Kanishka Kobbekaduwa
Shreetu Shrestha
Pan Adhikari
Exian Liu
Lawrence Coleman
Jianbing Zhang
Ying Shi
Yuanyuan Zhou
Yehonadav Bekenstein
Feng Yan
Apparao M. Rao
Hsinhan Tsai
Matthew C. Beard
Wanyi Nie
Jianbo Gao
In-situ observation of trapped carriers in organic metal halide perovskite films with ultra-fast temporal and ultra-high energetic resolutions
description Defect states in perovskites dictate the charge carriers behaviour, thus the ultimate optical and electrical properties. Here, the authors in-situ investigate trapped carrier dynamics in MAPbI3 thin films with ultra-fast temporal and high energetic resolution by means of ultrafast photocurrent spectroscopy.
format article
author Kanishka Kobbekaduwa
Shreetu Shrestha
Pan Adhikari
Exian Liu
Lawrence Coleman
Jianbing Zhang
Ying Shi
Yuanyuan Zhou
Yehonadav Bekenstein
Feng Yan
Apparao M. Rao
Hsinhan Tsai
Matthew C. Beard
Wanyi Nie
Jianbo Gao
author_facet Kanishka Kobbekaduwa
Shreetu Shrestha
Pan Adhikari
Exian Liu
Lawrence Coleman
Jianbing Zhang
Ying Shi
Yuanyuan Zhou
Yehonadav Bekenstein
Feng Yan
Apparao M. Rao
Hsinhan Tsai
Matthew C. Beard
Wanyi Nie
Jianbo Gao
author_sort Kanishka Kobbekaduwa
title In-situ observation of trapped carriers in organic metal halide perovskite films with ultra-fast temporal and ultra-high energetic resolutions
title_short In-situ observation of trapped carriers in organic metal halide perovskite films with ultra-fast temporal and ultra-high energetic resolutions
title_full In-situ observation of trapped carriers in organic metal halide perovskite films with ultra-fast temporal and ultra-high energetic resolutions
title_fullStr In-situ observation of trapped carriers in organic metal halide perovskite films with ultra-fast temporal and ultra-high energetic resolutions
title_full_unstemmed In-situ observation of trapped carriers in organic metal halide perovskite films with ultra-fast temporal and ultra-high energetic resolutions
title_sort in-situ observation of trapped carriers in organic metal halide perovskite films with ultra-fast temporal and ultra-high energetic resolutions
publisher Nature Portfolio
publishDate 2021
url https://doaj.org/article/dfc55409c01540369515fb81ab8de5d8
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