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Highly luminescent scintillating hetero-ligand MOF nanocrystals with engineered Stokes shift for photonic applications

Large Stokes shift fast emitters show a negligible reabsorption of their luminescence, a feature highly desirable for several applications such as fluorescence imaging, solar-light managing, and fabricating sensitive scintillating detectors for medical imaging and high-rate high-energy physics exper...

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Detalles Bibliográficos
Autores principales: Perego, J, Bezuidenhout, Charl X, Villa, I, Cova, F, Crapanzano, R, Frank, I, Pagano, F, Kratochwill, N, Auffray, E, Bracco, S, Vedda, A, Dujardin, C, Sozzani, P E, Meinardi, F, Comotti, A, Monguzzi, A
Lenguaje:eng
Publicado: 2022
Materias:
Acceso en línea:https://dx.doi.org/10.1038/s41467-022-31163-0
http://cds.cern.ch/record/2814827
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author Perego, J
Bezuidenhout, Charl X
Villa, I
Cova, F
Crapanzano, R
Frank, I
Pagano, F
Kratochwill, N
Auffray, E
Bracco, S
Vedda, A
Dujardin, C
Sozzani, P E
Meinardi, F
Comotti, A
Monguzzi, A
author_facet Perego, J
Bezuidenhout, Charl X
Villa, I
Cova, F
Crapanzano, R
Frank, I
Pagano, F
Kratochwill, N
Auffray, E
Bracco, S
Vedda, A
Dujardin, C
Sozzani, P E
Meinardi, F
Comotti, A
Monguzzi, A
author_sort Perego, J
collection CERN
description Large Stokes shift fast emitters show a negligible reabsorption of their luminescence, a feature highly desirable for several applications such as fluorescence imaging, solar-light managing, and fabricating sensitive scintillating detectors for medical imaging and high-rate high-energy physics experiments. Here we obtain high efficiency luminescence with significant Stokes shift by exploiting fluorescent conjugated acene building blocks arranged in nanocrystals. Two ligands of equal molecular length and connectivity, yet complementary electronic properties, are co-assembled by zirconium oxy-hydroxy clusters, generating crystalline hetero-ligand metal-organic framework (MOF) nanocrystals. The diffusion of singlet excitons within the MOF and the matching of ligands absorption and emission properties enables an ultrafast activation of the low energy emission in the 100 ps time scale. The hybrid nanocrystals show a fluorescence quantum efficiency of ~60% and a Stokes shift as large as 750 meV (~6000 cm$^{−1}$), which suppresses the emission reabsorption also in bulk devices. The fabricated prototypal nanocomposite fast scintillator shows benchmark performances which compete with those of some inorganic and organic commercial systems.
id cern-2814827
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2022
record_format invenio
spelling cern-28148272023-03-31T09:49:20Zdoi:10.1038/s41467-022-31163-0http://cds.cern.ch/record/2814827engPerego, JBezuidenhout, Charl XVilla, ICova, FCrapanzano, RFrank, IPagano, FKratochwill, NAuffray, EBracco, SVedda, ADujardin, CSozzani, P EMeinardi, FComotti, AMonguzzi, AHighly luminescent scintillating hetero-ligand MOF nanocrystals with engineered Stokes shift for photonic applicationsPhysics in GeneralLarge Stokes shift fast emitters show a negligible reabsorption of their luminescence, a feature highly desirable for several applications such as fluorescence imaging, solar-light managing, and fabricating sensitive scintillating detectors for medical imaging and high-rate high-energy physics experiments. Here we obtain high efficiency luminescence with significant Stokes shift by exploiting fluorescent conjugated acene building blocks arranged in nanocrystals. Two ligands of equal molecular length and connectivity, yet complementary electronic properties, are co-assembled by zirconium oxy-hydroxy clusters, generating crystalline hetero-ligand metal-organic framework (MOF) nanocrystals. The diffusion of singlet excitons within the MOF and the matching of ligands absorption and emission properties enables an ultrafast activation of the low energy emission in the 100 ps time scale. The hybrid nanocrystals show a fluorescence quantum efficiency of ~60% and a Stokes shift as large as 750 meV (~6000 cm$^{−1}$), which suppresses the emission reabsorption also in bulk devices. The fabricated prototypal nanocomposite fast scintillator shows benchmark performances which compete with those of some inorganic and organic commercial systems.oai:cds.cern.ch:28148272022
spellingShingle Physics in General
Perego, J
Bezuidenhout, Charl X
Villa, I
Cova, F
Crapanzano, R
Frank, I
Pagano, F
Kratochwill, N
Auffray, E
Bracco, S
Vedda, A
Dujardin, C
Sozzani, P E
Meinardi, F
Comotti, A
Monguzzi, A
Highly luminescent scintillating hetero-ligand MOF nanocrystals with engineered Stokes shift for photonic applications
title Highly luminescent scintillating hetero-ligand MOF nanocrystals with engineered Stokes shift for photonic applications
title_full Highly luminescent scintillating hetero-ligand MOF nanocrystals with engineered Stokes shift for photonic applications
title_fullStr Highly luminescent scintillating hetero-ligand MOF nanocrystals with engineered Stokes shift for photonic applications
title_full_unstemmed Highly luminescent scintillating hetero-ligand MOF nanocrystals with engineered Stokes shift for photonic applications
title_short Highly luminescent scintillating hetero-ligand MOF nanocrystals with engineered Stokes shift for photonic applications
title_sort highly luminescent scintillating hetero-ligand mof nanocrystals with engineered stokes shift for photonic applications
topic Physics in General
url https://dx.doi.org/10.1038/s41467-022-31163-0
http://cds.cern.ch/record/2814827
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