Cargando…

Enhanced Photoluminescence and Prolonged Carrier Lifetime through Laser Radiation Hardening and Self-Healing in Aged MAPbBr(3) Perovskites Encapsulated in NiO Nanotubes

Organic-inorganic perovskites hold great promise as optoelectronic semiconductors for pure color light emitting and photovoltaic devices. However, challenges persist regarding their photostability and chemical stability, which limit their extensive applications. This paper investigates the laser rad...

Descripción completa

Detalles Bibliográficos
Autores principales: Kamau, Steve, Rodriguez, Roberto Gonzalez, Jiang, Yan, Mondragon, Araceli Herrera, Varghese, Sinto, Hurley, Noah, Kaul, Anupama, Cui, Jingbiao, Lin, Yuankun
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10534348/
https://www.ncbi.nlm.nih.gov/pubmed/37763869
http://dx.doi.org/10.3390/mi14091706
_version_ 1785112372927528960
author Kamau, Steve
Rodriguez, Roberto Gonzalez
Jiang, Yan
Mondragon, Araceli Herrera
Varghese, Sinto
Hurley, Noah
Kaul, Anupama
Cui, Jingbiao
Lin, Yuankun
author_facet Kamau, Steve
Rodriguez, Roberto Gonzalez
Jiang, Yan
Mondragon, Araceli Herrera
Varghese, Sinto
Hurley, Noah
Kaul, Anupama
Cui, Jingbiao
Lin, Yuankun
author_sort Kamau, Steve
collection PubMed
description Organic-inorganic perovskites hold great promise as optoelectronic semiconductors for pure color light emitting and photovoltaic devices. However, challenges persist regarding their photostability and chemical stability, which limit their extensive applications. This paper investigates the laser radiation hardening and self-healing-induced properties of aged MAPbBr(3) perovskites encapsulated in NiO nanotubes (MAPbBr(3)@NiO) using photoluminescence (PL) and fluorescence lifetime imaging (FLIM). After deliberately subjecting the MAPbBr(3)@ NiO to atmospheric conditions for two years, the sample remains remarkably stable. It exhibits no changes in PL wavelength during UV laser irradiation and self-healing. Furthermore, exposure to UV light at 375 nm enhances the PL of the self-healed MAPbBr(3)@NiO. FLIM analysis sheds light on the mechanism behind photodegradation, self-healing, and PL enhancement. The results indicate the involvement of many carrier-trapping states with low lifetime events and an increase in peak lifetime after self-healing. The formation of trapping states at the perovskite/nanotube interface is discussed and tested. This study provides new insights into the dynamics of photo-carriers during photodegradation and self-healing in organic-inorganic perovskites.
format Online
Article
Text
id pubmed-10534348
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-105343482023-09-29 Enhanced Photoluminescence and Prolonged Carrier Lifetime through Laser Radiation Hardening and Self-Healing in Aged MAPbBr(3) Perovskites Encapsulated in NiO Nanotubes Kamau, Steve Rodriguez, Roberto Gonzalez Jiang, Yan Mondragon, Araceli Herrera Varghese, Sinto Hurley, Noah Kaul, Anupama Cui, Jingbiao Lin, Yuankun Micromachines (Basel) Article Organic-inorganic perovskites hold great promise as optoelectronic semiconductors for pure color light emitting and photovoltaic devices. However, challenges persist regarding their photostability and chemical stability, which limit their extensive applications. This paper investigates the laser radiation hardening and self-healing-induced properties of aged MAPbBr(3) perovskites encapsulated in NiO nanotubes (MAPbBr(3)@NiO) using photoluminescence (PL) and fluorescence lifetime imaging (FLIM). After deliberately subjecting the MAPbBr(3)@ NiO to atmospheric conditions for two years, the sample remains remarkably stable. It exhibits no changes in PL wavelength during UV laser irradiation and self-healing. Furthermore, exposure to UV light at 375 nm enhances the PL of the self-healed MAPbBr(3)@NiO. FLIM analysis sheds light on the mechanism behind photodegradation, self-healing, and PL enhancement. The results indicate the involvement of many carrier-trapping states with low lifetime events and an increase in peak lifetime after self-healing. The formation of trapping states at the perovskite/nanotube interface is discussed and tested. This study provides new insights into the dynamics of photo-carriers during photodegradation and self-healing in organic-inorganic perovskites. MDPI 2023-08-31 /pmc/articles/PMC10534348/ /pubmed/37763869 http://dx.doi.org/10.3390/mi14091706 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Kamau, Steve
Rodriguez, Roberto Gonzalez
Jiang, Yan
Mondragon, Araceli Herrera
Varghese, Sinto
Hurley, Noah
Kaul, Anupama
Cui, Jingbiao
Lin, Yuankun
Enhanced Photoluminescence and Prolonged Carrier Lifetime through Laser Radiation Hardening and Self-Healing in Aged MAPbBr(3) Perovskites Encapsulated in NiO Nanotubes
title Enhanced Photoluminescence and Prolonged Carrier Lifetime through Laser Radiation Hardening and Self-Healing in Aged MAPbBr(3) Perovskites Encapsulated in NiO Nanotubes
title_full Enhanced Photoluminescence and Prolonged Carrier Lifetime through Laser Radiation Hardening and Self-Healing in Aged MAPbBr(3) Perovskites Encapsulated in NiO Nanotubes
title_fullStr Enhanced Photoluminescence and Prolonged Carrier Lifetime through Laser Radiation Hardening and Self-Healing in Aged MAPbBr(3) Perovskites Encapsulated in NiO Nanotubes
title_full_unstemmed Enhanced Photoluminescence and Prolonged Carrier Lifetime through Laser Radiation Hardening and Self-Healing in Aged MAPbBr(3) Perovskites Encapsulated in NiO Nanotubes
title_short Enhanced Photoluminescence and Prolonged Carrier Lifetime through Laser Radiation Hardening and Self-Healing in Aged MAPbBr(3) Perovskites Encapsulated in NiO Nanotubes
title_sort enhanced photoluminescence and prolonged carrier lifetime through laser radiation hardening and self-healing in aged mapbbr(3) perovskites encapsulated in nio nanotubes
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10534348/
https://www.ncbi.nlm.nih.gov/pubmed/37763869
http://dx.doi.org/10.3390/mi14091706
work_keys_str_mv AT kamausteve enhancedphotoluminescenceandprolongedcarrierlifetimethroughlaserradiationhardeningandselfhealinginagedmapbbr3perovskitesencapsulatedinnionanotubes
AT rodriguezrobertogonzalez enhancedphotoluminescenceandprolongedcarrierlifetimethroughlaserradiationhardeningandselfhealinginagedmapbbr3perovskitesencapsulatedinnionanotubes
AT jiangyan enhancedphotoluminescenceandprolongedcarrierlifetimethroughlaserradiationhardeningandselfhealinginagedmapbbr3perovskitesencapsulatedinnionanotubes
AT mondragonaraceliherrera enhancedphotoluminescenceandprolongedcarrierlifetimethroughlaserradiationhardeningandselfhealinginagedmapbbr3perovskitesencapsulatedinnionanotubes
AT varghesesinto enhancedphotoluminescenceandprolongedcarrierlifetimethroughlaserradiationhardeningandselfhealinginagedmapbbr3perovskitesencapsulatedinnionanotubes
AT hurleynoah enhancedphotoluminescenceandprolongedcarrierlifetimethroughlaserradiationhardeningandselfhealinginagedmapbbr3perovskitesencapsulatedinnionanotubes
AT kaulanupama enhancedphotoluminescenceandprolongedcarrierlifetimethroughlaserradiationhardeningandselfhealinginagedmapbbr3perovskitesencapsulatedinnionanotubes
AT cuijingbiao enhancedphotoluminescenceandprolongedcarrierlifetimethroughlaserradiationhardeningandselfhealinginagedmapbbr3perovskitesencapsulatedinnionanotubes
AT linyuankun enhancedphotoluminescenceandprolongedcarrierlifetimethroughlaserradiationhardeningandselfhealinginagedmapbbr3perovskitesencapsulatedinnionanotubes