Highly efficient photoluminescence and lasing from hydroxide coated fully inorganic perovskite micro/nano-rods

The effect of surface passivation on the photoluminescence (PL) emitted by CsPbBr3 micro/nano‐rods coated with Pb(OH)2 is investigated, where a high quantum yield and excellent stability for the emission are found. The CsPbBr3/Pb(OH)2 rods generally present a peak that is blue shifted compared to th...

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Main Authors: Ying, G, Jana, A, Osokin, V, Park, Y, Taylor, RA, Farrow, T
Format: Journal article
Language:English
Published: Wiley 2020
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author Ying, G
Jana, A
Osokin, V
Park, Y
Taylor, RA
Farrow, T
author_facet Ying, G
Jana, A
Osokin, V
Park, Y
Taylor, RA
Farrow, T
author_sort Ying, G
collection OXFORD
description The effect of surface passivation on the photoluminescence (PL) emitted by CsPbBr3 micro/nano‐rods coated with Pb(OH)2 is investigated, where a high quantum yield and excellent stability for the emission are found. The CsPbBr3/Pb(OH)2 rods generally present a peak that is blue shifted compared to that seen in rods without a hydroxide cladding at low temperatures. By increasing the temperature, it is further shown that the passivated surface states are very robust against thermal effects and that the PL peak intensity only drops by a factor of 1.5. Localized stimulated emission at defect states found within larger rods is also demonstrated, clarified by spatially resolved confocal PL mapping along the length of the rods. The diffusion parameter of the carrier density distribution is measured to be 5.70 µm for the sky‐blue emission, whereas for the defect lasing site it is found to be smaller than this excitation spot size.
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spelling oxford-uuid:892ea4bc-a4df-4a08-8af6-65a34e8737ab2022-03-26T22:22:44ZHighly efficient photoluminescence and lasing from hydroxide coated fully inorganic perovskite micro/nano-rodsJournal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:892ea4bc-a4df-4a08-8af6-65a34e8737abEnglishSymplectic ElementsWiley2020Ying, GJana, AOsokin, VPark, YTaylor, RAFarrow, TThe effect of surface passivation on the photoluminescence (PL) emitted by CsPbBr3 micro/nano‐rods coated with Pb(OH)2 is investigated, where a high quantum yield and excellent stability for the emission are found. The CsPbBr3/Pb(OH)2 rods generally present a peak that is blue shifted compared to that seen in rods without a hydroxide cladding at low temperatures. By increasing the temperature, it is further shown that the passivated surface states are very robust against thermal effects and that the PL peak intensity only drops by a factor of 1.5. Localized stimulated emission at defect states found within larger rods is also demonstrated, clarified by spatially resolved confocal PL mapping along the length of the rods. The diffusion parameter of the carrier density distribution is measured to be 5.70 µm for the sky‐blue emission, whereas for the defect lasing site it is found to be smaller than this excitation spot size.
spellingShingle Ying, G
Jana, A
Osokin, V
Park, Y
Taylor, RA
Farrow, T
Highly efficient photoluminescence and lasing from hydroxide coated fully inorganic perovskite micro/nano-rods
title Highly efficient photoluminescence and lasing from hydroxide coated fully inorganic perovskite micro/nano-rods
title_full Highly efficient photoluminescence and lasing from hydroxide coated fully inorganic perovskite micro/nano-rods
title_fullStr Highly efficient photoluminescence and lasing from hydroxide coated fully inorganic perovskite micro/nano-rods
title_full_unstemmed Highly efficient photoluminescence and lasing from hydroxide coated fully inorganic perovskite micro/nano-rods
title_short Highly efficient photoluminescence and lasing from hydroxide coated fully inorganic perovskite micro/nano-rods
title_sort highly efficient photoluminescence and lasing from hydroxide coated fully inorganic perovskite micro nano rods
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AT osokinv highlyefficientphotoluminescenceandlasingfromhydroxidecoatedfullyinorganicperovskitemicronanorods
AT parky highlyefficientphotoluminescenceandlasingfromhydroxidecoatedfullyinorganicperovskitemicronanorods
AT taylorra highlyefficientphotoluminescenceandlasingfromhydroxidecoatedfullyinorganicperovskitemicronanorods
AT farrowt highlyefficientphotoluminescenceandlasingfromhydroxidecoatedfullyinorganicperovskitemicronanorods