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dc.creatorGhosh, J.es
dc.creatorO'Neill, J.es
dc.creatorMasteghin, M.G.es
dc.creatorBraddock, I.es
dc.creatorCrean, C.es
dc.creatorDorey, R.es
dc.creatorSalway, H.es
dc.creatorAnaya Martín, Migueles
dc.creatorReiss, J.es
dc.creatorWolfe, D.es
dc.creatorSellin, P.es
dc.date.accessioned2024-06-28T16:51:38Z
dc.date.available2024-06-28T16:51:38Z
dc.date.issued2023
dc.identifier.citationGhosh, J., O'Neill, J., Masteghin, M.G., Braddock, I., Crean, C., Dorey, R.,...,Sellin, P. (2023). Surfactant-Dependent Bulk Scale Mechanochemical Synthesis of CsPbBr3 Nanocrystals for Plastic Scintillator-Based X-ray Imaging. ACS Applied Nano Materials, 6 (16), 14980-14990. https://doi.org/10.1021/acsanm.3c02531.
dc.identifier.issn2574-0970es
dc.identifier.urihttps://hdl.handle.net/11441/160982
dc.description.abstractWe report a facile, solvent-free surfactant-dependent mechanochemical synthesis of highly luminescent CsPbBr3 nanocrystals (NCs) and study their scintillation properties. A small amount of surfactant oleylamine (OAM) plays an important role in the two-step ball milling method to control the size and emission properties of the NCs. The solid-state synthesized perovskite NCs exhibit a high photoluminescence quantum yield (PLQY) of up to 88% with excellent stability. CsPbBr3 NCs capped with different amounts of surfactant were dispersed in toluene and mixed with polymethyl methacrylate (PMMA) polymer and cast into scintillator discs. With increasing concentration of OAM during synthesis, the PL yield of CsPbBr3/PMMA nanocomposite was increased, which is attributed to reduced NC aggregation and PL quenching. We also varied the perovskite loading concentration in the nanocomposite and studied the resulting emission properties. The most intense PL emission was observed from the 2% perovskite-loaded disc, while the 10% loaded disc exhibited the highest radioluminescence (RL) emission from 50 kV X-rays. The strong RL yield may be attributed to the deep penetration of X-rays into the composite, combined with the large interaction cross-section of the X-rays with the high-Z atoms within the NCs. The nanocomposite disc shows an intense RL emission peak centered at 536 nm and a fast RL decay time of 29.4 ns. Further, we have demonstrated the X-ray imaging performance of a 10% CsPbBr3 NC-loaded nanocomposite disc.es
dc.description.sponsorshipDefense Threat Reduction Agency (DTRA) HDTRA1-18-1-0019es
dc.description.sponsorshipEngineering and Physical Sciences Research Council EP/V036327/1, EP/S023046/1es
dc.description.sponsorshipMinisterio de Ciencia e Innovación RYC2021- 034941-Ies
dc.formatapplication/pdfes
dc.format.extent11 p.es
dc.language.isoenges
dc.publisherAmerican Chemical Societyes
dc.relation.ispartofACS Applied Nano Materials, 6 (16), 14980-14990.
dc.rightsAtribución 4.0 Internacional*
dc.rights.urihttp://creativecommons.org/licenses/by/4.0/*
dc.subjectCsPbBr3 nanocrystalses
dc.subjectMechanochemical synthesises
dc.subjectPlastic scintillatores
dc.subjectStrong photoluminescencees
dc.subjectX-ray imaginges
dc.titleSurfactant-Dependent Bulk Scale Mechanochemical Synthesis of CsPbBr3 Nanocrystals for Plastic Scintillator-Based X-ray Imaginges
dc.typeinfo:eu-repo/semantics/articlees
dc.type.versioninfo:eu-repo/semantics/publishedVersiones
dc.rights.accessRightsinfo:eu-repo/semantics/embargoedAccesses
dc.contributor.affiliationUniversidad de Sevilla. Departamento de Física de la Materia Condensadaes
dc.relation.projectIDHDTRA1-18-1-0019es
dc.relation.projectIDEP/V036327/1es
dc.relation.projectIDEP/S023046/1es
dc.relation.projectIDRYC2021- 034941-Ies
dc.date.embargoEndDate2024-08-25
dc.relation.publisherversionhttps://doi.org/10.1021/acsanm.3c02531es
dc.identifier.doi10.1021/acsanm.3c02531es
dc.journaltitleACS Applied Nano Materialses
dc.publication.volumen6es
dc.publication.issue16es
dc.publication.initialPage14980es
dc.publication.endPage14990es
dc.contributor.funderDefense Threat Reduction Agency (DTRA). EE.UUes
dc.contributor.funderEngineering and Physical Sciences Research Council (EPSRC). U.K.es
dc.contributor.funderMinisterio de Ciencia e Innovación (MICIN). Españaes

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