Scalable photonic sources using two-dimensional lead halide perovskite superlattices

Decoupled high-order MQW superlattices are desired to design miniaturized photonic sources but they are yet to be realized in scalable ways. Here Jagielski et al. achieve this goal using multiple-stacked colloidal lead halide perovskite quantum wells separated by atomically thin quantum barriers.

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Autores principales: Jakub Jagielski, Simon F. Solari, Lucie Jordan, Declan Scullion, Balthasar Blülle, Yen-Ting Li, Frank Krumeich, Yu-Cheng Chiu, Beat Ruhstaller, Elton J. G. Santos, Chih-Jen Shih
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Lenguaje:EN
Publicado: Nature Portfolio 2020
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Acceso en línea:https://doaj.org/article/af1a789ccf1f49a282bd6d237a38b1f9
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spelling oai:doaj.org-article:af1a789ccf1f49a282bd6d237a38b1f92021-12-02T17:31:25ZScalable photonic sources using two-dimensional lead halide perovskite superlattices10.1038/s41467-019-14084-32041-1723https://doaj.org/article/af1a789ccf1f49a282bd6d237a38b1f92020-01-01T00:00:00Zhttps://doi.org/10.1038/s41467-019-14084-3https://doaj.org/toc/2041-1723Decoupled high-order MQW superlattices are desired to design miniaturized photonic sources but they are yet to be realized in scalable ways. Here Jagielski et al. achieve this goal using multiple-stacked colloidal lead halide perovskite quantum wells separated by atomically thin quantum barriers.Jakub JagielskiSimon F. SolariLucie JordanDeclan ScullionBalthasar BlülleYen-Ting LiFrank KrumeichYu-Cheng ChiuBeat RuhstallerElton J. G. SantosChih-Jen ShihNature PortfolioarticleScienceQENNature Communications, Vol 11, Iss 1, Pp 1-9 (2020)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Jakub Jagielski
Simon F. Solari
Lucie Jordan
Declan Scullion
Balthasar Blülle
Yen-Ting Li
Frank Krumeich
Yu-Cheng Chiu
Beat Ruhstaller
Elton J. G. Santos
Chih-Jen Shih
Scalable photonic sources using two-dimensional lead halide perovskite superlattices
description Decoupled high-order MQW superlattices are desired to design miniaturized photonic sources but they are yet to be realized in scalable ways. Here Jagielski et al. achieve this goal using multiple-stacked colloidal lead halide perovskite quantum wells separated by atomically thin quantum barriers.
format article
author Jakub Jagielski
Simon F. Solari
Lucie Jordan
Declan Scullion
Balthasar Blülle
Yen-Ting Li
Frank Krumeich
Yu-Cheng Chiu
Beat Ruhstaller
Elton J. G. Santos
Chih-Jen Shih
author_facet Jakub Jagielski
Simon F. Solari
Lucie Jordan
Declan Scullion
Balthasar Blülle
Yen-Ting Li
Frank Krumeich
Yu-Cheng Chiu
Beat Ruhstaller
Elton J. G. Santos
Chih-Jen Shih
author_sort Jakub Jagielski
title Scalable photonic sources using two-dimensional lead halide perovskite superlattices
title_short Scalable photonic sources using two-dimensional lead halide perovskite superlattices
title_full Scalable photonic sources using two-dimensional lead halide perovskite superlattices
title_fullStr Scalable photonic sources using two-dimensional lead halide perovskite superlattices
title_full_unstemmed Scalable photonic sources using two-dimensional lead halide perovskite superlattices
title_sort scalable photonic sources using two-dimensional lead halide perovskite superlattices
publisher Nature Portfolio
publishDate 2020
url https://doaj.org/article/af1a789ccf1f49a282bd6d237a38b1f9
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AT simonfsolari scalablephotonicsourcesusingtwodimensionalleadhalideperovskitesuperlattices
AT luciejordan scalablephotonicsourcesusingtwodimensionalleadhalideperovskitesuperlattices
AT declanscullion scalablephotonicsourcesusingtwodimensionalleadhalideperovskitesuperlattices
AT balthasarblulle scalablephotonicsourcesusingtwodimensionalleadhalideperovskitesuperlattices
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