Chemical and spectroscopic characterization of the mononuclear photosensitizers [(DPEPhos)Cu(I)(MPyrT)]0/+ (CuL, CuLH) and their dinuclear analogues (Cu2 L', Cu2 L'H2 ), backed by (TD)DFT and high-level GW-Bethe-Salpeter equation calculations, exemplifies the complex influence of charge, nuclearity and structural flexibility on UV-induced photophysical pathways. Ultrafast transient absorption and step-scan FTIR spectroscopy reveal flattening distortion in the triplet state of CuLH as controlled by charge, which also appears to have a large impact on the symmetry of the long-lived triplet states in Cu2 L' and Cu2 L'H2 . Time-resolved luminescence spectroscopy (solid state), supported by transient photodissociation spectroscopy (gas phase), confirm a lifetime of some tens of μs for the respective triplet states, as well as the energetics of thermally activated delayed luminescence, both being essential parameters for application of these materials based on earth-abundant copper in photocatalysis and luminescent devices.

Grupe, M., Boden, P., Di Martino-Fumo, P., Gui, X., Bruschi, C., Israil, R., et al. (2021). Time-resolved spectroscopy and electronic structure of mono-and dinuclear pyridyl-triazole/{DPEPhos} based Cu(I) complexes. CHEMISTRY-A EUROPEAN JOURNAL, 27(61), 15251-15270 [10.1002/chem.202102760].

Time-resolved spectroscopy and electronic structure of mono-and dinuclear pyridyl-triazole/{DPEPhos} based Cu(I) complexes

Claudia Bizzarri
;
2021-01-01

Abstract

Chemical and spectroscopic characterization of the mononuclear photosensitizers [(DPEPhos)Cu(I)(MPyrT)]0/+ (CuL, CuLH) and their dinuclear analogues (Cu2 L', Cu2 L'H2 ), backed by (TD)DFT and high-level GW-Bethe-Salpeter equation calculations, exemplifies the complex influence of charge, nuclearity and structural flexibility on UV-induced photophysical pathways. Ultrafast transient absorption and step-scan FTIR spectroscopy reveal flattening distortion in the triplet state of CuLH as controlled by charge, which also appears to have a large impact on the symmetry of the long-lived triplet states in Cu2 L' and Cu2 L'H2 . Time-resolved luminescence spectroscopy (solid state), supported by transient photodissociation spectroscopy (gas phase), confirm a lifetime of some tens of μs for the respective triplet states, as well as the energetics of thermally activated delayed luminescence, both being essential parameters for application of these materials based on earth-abundant copper in photocatalysis and luminescent devices.
2021
Pubblicato
Rilevanza internazionale
Articolo
Esperti anonimi
Settore CHEM-05/A - Chimica organica
Settore CHEM-03/A - Chimica generale e inorganica
Settore CHEM-02/A - Chimica fisica
English
Con Impact Factor ISI
cooperative effects
copper(I) complexes
flattening distortion
photosensitizers
time-resolved spectroscopy
Grupe, M., Boden, P., Di Martino-Fumo, P., Gui, X., Bruschi, C., Israil, R., et al. (2021). Time-resolved spectroscopy and electronic structure of mono-and dinuclear pyridyl-triazole/{DPEPhos} based Cu(I) complexes. CHEMISTRY-A EUROPEAN JOURNAL, 27(61), 15251-15270 [10.1002/chem.202102760].
Grupe, M; Boden, P; Di Martino-Fumo, P; Gui, X; Bruschi, C; Israil, R; Schmitt, M; Nieger, M; Gerhards, M; Klopper, W; Riehn, C; Bizzarri, C; Diller, ...espandi
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2108/443325
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