Exploring energy transfer between pyrene complexes and europium ions - potential routes to oxygen sensors

Pyrene chromophores are shown to exhibit reversible energy transfer to europium ions, resulting in oxygen dependent lanthanide luminescence. Two different pathways can give rise to oxygen dependence: rapid reversible energy transfer between the T1 state and the emissive state, or slow T1-5D0 energy...

Szczegółowa specyfikacja

Opis bibliograficzny
Główni autorzy: Hueting, R, Tropiano, M, Faulkner, S
Format: Journal article
Język:English
Wydane: Royal Society of Chemistry 2014
_version_ 1826278034154455040
author Hueting, R
Tropiano, M
Faulkner, S
author_facet Hueting, R
Tropiano, M
Faulkner, S
author_sort Hueting, R
collection OXFORD
description Pyrene chromophores are shown to exhibit reversible energy transfer to europium ions, resulting in oxygen dependent lanthanide luminescence. Two different pathways can give rise to oxygen dependence: rapid reversible energy transfer between the T1 state and the emissive state, or slow T1-5D0 energy transfer on the timescale of triplet state quenching. This journal is
first_indexed 2024-03-06T23:37:53Z
format Journal article
id oxford-uuid:6e4a10c5-90b2-4b3d-b4cd-3d599ac6569f
institution University of Oxford
language English
last_indexed 2024-03-06T23:37:53Z
publishDate 2014
publisher Royal Society of Chemistry
record_format dspace
spelling oxford-uuid:6e4a10c5-90b2-4b3d-b4cd-3d599ac6569f2022-03-26T19:23:28ZExploring energy transfer between pyrene complexes and europium ions - potential routes to oxygen sensorsJournal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:6e4a10c5-90b2-4b3d-b4cd-3d599ac6569fEnglishSymplectic Elements at OxfordRoyal Society of Chemistry2014Hueting, RTropiano, MFaulkner, SPyrene chromophores are shown to exhibit reversible energy transfer to europium ions, resulting in oxygen dependent lanthanide luminescence. Two different pathways can give rise to oxygen dependence: rapid reversible energy transfer between the T1 state and the emissive state, or slow T1-5D0 energy transfer on the timescale of triplet state quenching. This journal is
spellingShingle Hueting, R
Tropiano, M
Faulkner, S
Exploring energy transfer between pyrene complexes and europium ions - potential routes to oxygen sensors
title Exploring energy transfer between pyrene complexes and europium ions - potential routes to oxygen sensors
title_full Exploring energy transfer between pyrene complexes and europium ions - potential routes to oxygen sensors
title_fullStr Exploring energy transfer between pyrene complexes and europium ions - potential routes to oxygen sensors
title_full_unstemmed Exploring energy transfer between pyrene complexes and europium ions - potential routes to oxygen sensors
title_short Exploring energy transfer between pyrene complexes and europium ions - potential routes to oxygen sensors
title_sort exploring energy transfer between pyrene complexes and europium ions potential routes to oxygen sensors
work_keys_str_mv AT huetingr exploringenergytransferbetweenpyrenecomplexesandeuropiumionspotentialroutestooxygensensors
AT tropianom exploringenergytransferbetweenpyrenecomplexesandeuropiumionspotentialroutestooxygensensors
AT faulkners exploringenergytransferbetweenpyrenecomplexesandeuropiumionspotentialroutestooxygensensors