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Composite fast scintillators based on high-Z fluorescent metal–organic framework nanocrystals

Scintillators, materials that produce light pulses upon interaction with ionizing radiation, are widely employed in radiation detectors. In advanced medical-imaging technologies, fast scintillators enabling a time resolution of tens of picoseconds are required to achieve high-resolution imaging at t...

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Autores principales: Perego, J, Villa, I, Pedrini, A, Padovani, E C, Crapanzano, R, Vedda, A, Dujardin, C, Bezuidenhout, Charl X, Bracco, S, Sozzani, P E, Comotti, A, Gironi, L, Beretta, M, Salomoni, M, Kratochwil, N, Gundacker, S, Auffray, E, Meinardi, F, Monguzzi, A
Lenguaje:eng
Publicado: 2021
Acceso en línea:https://dx.doi.org/10.1038/s41566-021-00769-z
http://cds.cern.ch/record/2766182
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author Perego, J
Villa, I
Pedrini, A
Padovani, E C
Crapanzano, R
Vedda, A
Dujardin, C
Bezuidenhout, Charl X
Bracco, S
Sozzani, P E
Comotti, A
Gironi, L
Beretta, M
Salomoni, M
Kratochwil, N
Gundacker, S
Auffray, E
Meinardi, F
Monguzzi, A
author_facet Perego, J
Villa, I
Pedrini, A
Padovani, E C
Crapanzano, R
Vedda, A
Dujardin, C
Bezuidenhout, Charl X
Bracco, S
Sozzani, P E
Comotti, A
Gironi, L
Beretta, M
Salomoni, M
Kratochwil, N
Gundacker, S
Auffray, E
Meinardi, F
Monguzzi, A
author_sort Perego, J
collection CERN
description Scintillators, materials that produce light pulses upon interaction with ionizing radiation, are widely employed in radiation detectors. In advanced medical-imaging technologies, fast scintillators enabling a time resolution of tens of picoseconds are required to achieve high-resolution imaging at the millimetre length scale. Here we demonstrate that composite materials based on fluorescent metal–organic framework (MOF) nanocrystals can work as fast scintillators. We present a prototype scintillator fabricated by embedding MOF nanocrystals in a polymer. The MOF comprises zirconium oxo-hydroxy clusters, high-Z linking nodes interacting with the ionizing radiation, arranged in an orderly fashion at a nanometric distance from 9,10-diphenylanthracene ligand emitters. Their incorporation in the framework enables fast sensitization of the ligand fluorescence, thus avoiding issues typically arising from the intimate mixing of complementary elements. This proof-of-concept prototype device shows an ultrafast scintillation rise time of ~50 ps, thus supporting the development of new scintillators based on engineered fluorescent MOF nanocrystals.
id oai-inspirehep.net-1861916
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2021
record_format invenio
spelling oai-inspirehep.net-18619162021-05-09T20:14:22Zdoi:10.1038/s41566-021-00769-zhttp://cds.cern.ch/record/2766182engPerego, JVilla, IPedrini, APadovani, E CCrapanzano, RVedda, ADujardin, CBezuidenhout, Charl XBracco, SSozzani, P EComotti, AGironi, LBeretta, MSalomoni, MKratochwil, NGundacker, SAuffray, EMeinardi, FMonguzzi, AComposite fast scintillators based on high-Z fluorescent metal–organic framework nanocrystalsScintillators, materials that produce light pulses upon interaction with ionizing radiation, are widely employed in radiation detectors. In advanced medical-imaging technologies, fast scintillators enabling a time resolution of tens of picoseconds are required to achieve high-resolution imaging at the millimetre length scale. Here we demonstrate that composite materials based on fluorescent metal–organic framework (MOF) nanocrystals can work as fast scintillators. We present a prototype scintillator fabricated by embedding MOF nanocrystals in a polymer. The MOF comprises zirconium oxo-hydroxy clusters, high-Z linking nodes interacting with the ionizing radiation, arranged in an orderly fashion at a nanometric distance from 9,10-diphenylanthracene ligand emitters. Their incorporation in the framework enables fast sensitization of the ligand fluorescence, thus avoiding issues typically arising from the intimate mixing of complementary elements. This proof-of-concept prototype device shows an ultrafast scintillation rise time of ~50 ps, thus supporting the development of new scintillators based on engineered fluorescent MOF nanocrystals.oai:inspirehep.net:18619162021
spellingShingle Perego, J
Villa, I
Pedrini, A
Padovani, E C
Crapanzano, R
Vedda, A
Dujardin, C
Bezuidenhout, Charl X
Bracco, S
Sozzani, P E
Comotti, A
Gironi, L
Beretta, M
Salomoni, M
Kratochwil, N
Gundacker, S
Auffray, E
Meinardi, F
Monguzzi, A
Composite fast scintillators based on high-Z fluorescent metal–organic framework nanocrystals
title Composite fast scintillators based on high-Z fluorescent metal–organic framework nanocrystals
title_full Composite fast scintillators based on high-Z fluorescent metal–organic framework nanocrystals
title_fullStr Composite fast scintillators based on high-Z fluorescent metal–organic framework nanocrystals
title_full_unstemmed Composite fast scintillators based on high-Z fluorescent metal–organic framework nanocrystals
title_short Composite fast scintillators based on high-Z fluorescent metal–organic framework nanocrystals
title_sort composite fast scintillators based on high-z fluorescent metal–organic framework nanocrystals
url https://dx.doi.org/10.1038/s41566-021-00769-z
http://cds.cern.ch/record/2766182
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