Carrier lifetime enhancement in halide perovskite via remote epitaxy

Crystallographic dislocation has proven harmful to the carrier dynamics in conventional semiconductors but it is unexplored in metal halide perovskites. Here Jiang et al. grow remote epitaxial perovskite films on graphene with density-controlled dislocations and confirm their negative impact.

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Autores principales: Jie Jiang, Xin Sun, Xinchun Chen, Baiwei Wang, Zhizhong Chen, Yang Hu, Yuwei Guo, Lifu Zhang, Yuan Ma, Lei Gao, Fengshan Zheng, Lei Jin, Min Chen, Zhiwei Ma, Yuanyuan Zhou, Nitin P. Padture, Kory Beach, Humberto Terrones, Yunfeng Shi, Daniel Gall, Toh-Ming Lu, Esther Wertz, Jing Feng, Jian Shi
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Lenguaje:EN
Publicado: Nature Portfolio 2019
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Acceso en línea:https://doaj.org/article/980ef2ab3f98472697eb340f3a1e3c6c
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spelling oai:doaj.org-article:980ef2ab3f98472697eb340f3a1e3c6c2021-12-02T16:57:55ZCarrier lifetime enhancement in halide perovskite via remote epitaxy10.1038/s41467-019-12056-12041-1723https://doaj.org/article/980ef2ab3f98472697eb340f3a1e3c6c2019-09-01T00:00:00Zhttps://doi.org/10.1038/s41467-019-12056-1https://doaj.org/toc/2041-1723Crystallographic dislocation has proven harmful to the carrier dynamics in conventional semiconductors but it is unexplored in metal halide perovskites. Here Jiang et al. grow remote epitaxial perovskite films on graphene with density-controlled dislocations and confirm their negative impact.Jie JiangXin SunXinchun ChenBaiwei WangZhizhong ChenYang HuYuwei GuoLifu ZhangYuan MaLei GaoFengshan ZhengLei JinMin ChenZhiwei MaYuanyuan ZhouNitin P. PadtureKory BeachHumberto TerronesYunfeng ShiDaniel GallToh-Ming LuEsther WertzJing FengJian ShiNature PortfolioarticleScienceQENNature Communications, Vol 10, Iss 1, Pp 1-12 (2019)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Jie Jiang
Xin Sun
Xinchun Chen
Baiwei Wang
Zhizhong Chen
Yang Hu
Yuwei Guo
Lifu Zhang
Yuan Ma
Lei Gao
Fengshan Zheng
Lei Jin
Min Chen
Zhiwei Ma
Yuanyuan Zhou
Nitin P. Padture
Kory Beach
Humberto Terrones
Yunfeng Shi
Daniel Gall
Toh-Ming Lu
Esther Wertz
Jing Feng
Jian Shi
Carrier lifetime enhancement in halide perovskite via remote epitaxy
description Crystallographic dislocation has proven harmful to the carrier dynamics in conventional semiconductors but it is unexplored in metal halide perovskites. Here Jiang et al. grow remote epitaxial perovskite films on graphene with density-controlled dislocations and confirm their negative impact.
format article
author Jie Jiang
Xin Sun
Xinchun Chen
Baiwei Wang
Zhizhong Chen
Yang Hu
Yuwei Guo
Lifu Zhang
Yuan Ma
Lei Gao
Fengshan Zheng
Lei Jin
Min Chen
Zhiwei Ma
Yuanyuan Zhou
Nitin P. Padture
Kory Beach
Humberto Terrones
Yunfeng Shi
Daniel Gall
Toh-Ming Lu
Esther Wertz
Jing Feng
Jian Shi
author_facet Jie Jiang
Xin Sun
Xinchun Chen
Baiwei Wang
Zhizhong Chen
Yang Hu
Yuwei Guo
Lifu Zhang
Yuan Ma
Lei Gao
Fengshan Zheng
Lei Jin
Min Chen
Zhiwei Ma
Yuanyuan Zhou
Nitin P. Padture
Kory Beach
Humberto Terrones
Yunfeng Shi
Daniel Gall
Toh-Ming Lu
Esther Wertz
Jing Feng
Jian Shi
author_sort Jie Jiang
title Carrier lifetime enhancement in halide perovskite via remote epitaxy
title_short Carrier lifetime enhancement in halide perovskite via remote epitaxy
title_full Carrier lifetime enhancement in halide perovskite via remote epitaxy
title_fullStr Carrier lifetime enhancement in halide perovskite via remote epitaxy
title_full_unstemmed Carrier lifetime enhancement in halide perovskite via remote epitaxy
title_sort carrier lifetime enhancement in halide perovskite via remote epitaxy
publisher Nature Portfolio
publishDate 2019
url https://doaj.org/article/980ef2ab3f98472697eb340f3a1e3c6c
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