Cargando…

Ultrafast and long-time excited state kinetics of an NIR-emissive vanadium(iii) complex I: synthesis, spectroscopy and static quantum chemistry

In spite of intense, recent research efforts, luminescent transition metal complexes with Earth-abundant metals are still very rare owing to the small ligand field splitting of 3d transition metal complexes and the resulting non-emissive low-energy metal-centered states. Low-energy excited states de...

Descripción completa

Detalles Bibliográficos
Autores principales: Dorn, Matthias, Kalmbach, Jens, Boden, Pit, Kruse, Ayla, Dab, Chahinez, Reber, Christian, Niedner-Schatteburg, Gereon, Lochbrunner, Stefan, Gerhards, Markus, Seitz, Michael, Heinze, Katja
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8372323/
https://www.ncbi.nlm.nih.gov/pubmed/34476059
http://dx.doi.org/10.1039/d1sc02137k
_version_ 1783739779652780032
author Dorn, Matthias
Kalmbach, Jens
Boden, Pit
Kruse, Ayla
Dab, Chahinez
Reber, Christian
Niedner-Schatteburg, Gereon
Lochbrunner, Stefan
Gerhards, Markus
Seitz, Michael
Heinze, Katja
author_facet Dorn, Matthias
Kalmbach, Jens
Boden, Pit
Kruse, Ayla
Dab, Chahinez
Reber, Christian
Niedner-Schatteburg, Gereon
Lochbrunner, Stefan
Gerhards, Markus
Seitz, Michael
Heinze, Katja
author_sort Dorn, Matthias
collection PubMed
description In spite of intense, recent research efforts, luminescent transition metal complexes with Earth-abundant metals are still very rare owing to the small ligand field splitting of 3d transition metal complexes and the resulting non-emissive low-energy metal-centered states. Low-energy excited states decay efficiently non-radiatively, so that near-infrared emissive transition metal complexes with 3d transition metals are even more challenging. We report that the heteroleptic pseudo-octahedral d(2)-vanadium(iii) complex VCl(3)(ddpd) (ddpd = N,N′-dimethyl-N,N′-dipyridine-2-yl-pyridine-2,6-diamine) shows near-infrared singlet → triplet spin–flip phosphorescence maxima at 1102, 1219 and 1256 nm with a lifetime of 0.5 μs at room temperature. Band splitting, ligand deuteration, excitation energy and temperature effects on the excited state dynamics will be discussed on slow and fast timescales using Raman, static and time-resolved photoluminescence, step-scan FTIR and fs-UV pump-vis probe spectroscopy as well as photolysis experiments in combination with static quantum chemical calculations. These results inform future design strategies for molecular materials of Earth-abundant metal ions exhibiting spin–flip luminescence and photoinduced metal–ligand bond homolysis.
format Online
Article
Text
id pubmed-8372323
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher The Royal Society of Chemistry
record_format MEDLINE/PubMed
spelling pubmed-83723232021-09-01 Ultrafast and long-time excited state kinetics of an NIR-emissive vanadium(iii) complex I: synthesis, spectroscopy and static quantum chemistry Dorn, Matthias Kalmbach, Jens Boden, Pit Kruse, Ayla Dab, Chahinez Reber, Christian Niedner-Schatteburg, Gereon Lochbrunner, Stefan Gerhards, Markus Seitz, Michael Heinze, Katja Chem Sci Chemistry In spite of intense, recent research efforts, luminescent transition metal complexes with Earth-abundant metals are still very rare owing to the small ligand field splitting of 3d transition metal complexes and the resulting non-emissive low-energy metal-centered states. Low-energy excited states decay efficiently non-radiatively, so that near-infrared emissive transition metal complexes with 3d transition metals are even more challenging. We report that the heteroleptic pseudo-octahedral d(2)-vanadium(iii) complex VCl(3)(ddpd) (ddpd = N,N′-dimethyl-N,N′-dipyridine-2-yl-pyridine-2,6-diamine) shows near-infrared singlet → triplet spin–flip phosphorescence maxima at 1102, 1219 and 1256 nm with a lifetime of 0.5 μs at room temperature. Band splitting, ligand deuteration, excitation energy and temperature effects on the excited state dynamics will be discussed on slow and fast timescales using Raman, static and time-resolved photoluminescence, step-scan FTIR and fs-UV pump-vis probe spectroscopy as well as photolysis experiments in combination with static quantum chemical calculations. These results inform future design strategies for molecular materials of Earth-abundant metal ions exhibiting spin–flip luminescence and photoinduced metal–ligand bond homolysis. The Royal Society of Chemistry 2021-07-15 /pmc/articles/PMC8372323/ /pubmed/34476059 http://dx.doi.org/10.1039/d1sc02137k Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by/3.0/
spellingShingle Chemistry
Dorn, Matthias
Kalmbach, Jens
Boden, Pit
Kruse, Ayla
Dab, Chahinez
Reber, Christian
Niedner-Schatteburg, Gereon
Lochbrunner, Stefan
Gerhards, Markus
Seitz, Michael
Heinze, Katja
Ultrafast and long-time excited state kinetics of an NIR-emissive vanadium(iii) complex I: synthesis, spectroscopy and static quantum chemistry
title Ultrafast and long-time excited state kinetics of an NIR-emissive vanadium(iii) complex I: synthesis, spectroscopy and static quantum chemistry
title_full Ultrafast and long-time excited state kinetics of an NIR-emissive vanadium(iii) complex I: synthesis, spectroscopy and static quantum chemistry
title_fullStr Ultrafast and long-time excited state kinetics of an NIR-emissive vanadium(iii) complex I: synthesis, spectroscopy and static quantum chemistry
title_full_unstemmed Ultrafast and long-time excited state kinetics of an NIR-emissive vanadium(iii) complex I: synthesis, spectroscopy and static quantum chemistry
title_short Ultrafast and long-time excited state kinetics of an NIR-emissive vanadium(iii) complex I: synthesis, spectroscopy and static quantum chemistry
title_sort ultrafast and long-time excited state kinetics of an nir-emissive vanadium(iii) complex i: synthesis, spectroscopy and static quantum chemistry
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8372323/
https://www.ncbi.nlm.nih.gov/pubmed/34476059
http://dx.doi.org/10.1039/d1sc02137k
work_keys_str_mv AT dornmatthias ultrafastandlongtimeexcitedstatekineticsofanniremissivevanadiumiiicomplexisynthesisspectroscopyandstaticquantumchemistry
AT kalmbachjens ultrafastandlongtimeexcitedstatekineticsofanniremissivevanadiumiiicomplexisynthesisspectroscopyandstaticquantumchemistry
AT bodenpit ultrafastandlongtimeexcitedstatekineticsofanniremissivevanadiumiiicomplexisynthesisspectroscopyandstaticquantumchemistry
AT kruseayla ultrafastandlongtimeexcitedstatekineticsofanniremissivevanadiumiiicomplexisynthesisspectroscopyandstaticquantumchemistry
AT dabchahinez ultrafastandlongtimeexcitedstatekineticsofanniremissivevanadiumiiicomplexisynthesisspectroscopyandstaticquantumchemistry
AT reberchristian ultrafastandlongtimeexcitedstatekineticsofanniremissivevanadiumiiicomplexisynthesisspectroscopyandstaticquantumchemistry
AT niednerschatteburggereon ultrafastandlongtimeexcitedstatekineticsofanniremissivevanadiumiiicomplexisynthesisspectroscopyandstaticquantumchemistry
AT lochbrunnerstefan ultrafastandlongtimeexcitedstatekineticsofanniremissivevanadiumiiicomplexisynthesisspectroscopyandstaticquantumchemistry
AT gerhardsmarkus ultrafastandlongtimeexcitedstatekineticsofanniremissivevanadiumiiicomplexisynthesisspectroscopyandstaticquantumchemistry
AT seitzmichael ultrafastandlongtimeexcitedstatekineticsofanniremissivevanadiumiiicomplexisynthesisspectroscopyandstaticquantumchemistry
AT heinzekatja ultrafastandlongtimeexcitedstatekineticsofanniremissivevanadiumiiicomplexisynthesisspectroscopyandstaticquantumchemistry