Here we report the straightforward synthesis of the ligands Ltz, LtzC8, LtzPEG, LtzAnisand LAnispresenting the same pyridine-bistetrazolate (pytz, L) chelating scaffold but different substituents on the para position of the pyridine ring. Its substitution allows the tuning of the solubility of the LnIIIcomplexes [Ln(Li)3]3-. These new ligands form homoleptic nona-coordinated LnIIIcomplexes of analogous structure and comparable stability in water and methanol. The derivatization of the para position with triazole and substituted triazole groups does not lead to a significant shift of the absorption window, but a shift of 40 nm is observed in ligand LAnisdue to the presence of the p-ethynyl anisole fragment. The LtzXseries sensitize well, both the Eu and the Tb ions with quantum yields up to 98% for Tb and 43% for Eu, while the ligand LAnissensitizes well Eu (QY of 48%) but cannot sensitize Tb due to the position of its triplet state.

Versatile pyridine-2,6-bis-tetrazolate scaffolds for the formation of highly luminescent lanthanide complexes

Di Pietro, Sebastiano
Primo
;
2016-01-01

Abstract

Here we report the straightforward synthesis of the ligands Ltz, LtzC8, LtzPEG, LtzAnisand LAnispresenting the same pyridine-bistetrazolate (pytz, L) chelating scaffold but different substituents on the para position of the pyridine ring. Its substitution allows the tuning of the solubility of the LnIIIcomplexes [Ln(Li)3]3-. These new ligands form homoleptic nona-coordinated LnIIIcomplexes of analogous structure and comparable stability in water and methanol. The derivatization of the para position with triazole and substituted triazole groups does not lead to a significant shift of the absorption window, but a shift of 40 nm is observed in ligand LAnisdue to the presence of the p-ethynyl anisole fragment. The LtzXseries sensitize well, both the Eu and the Tb ions with quantum yields up to 98% for Tb and 43% for Eu, while the ligand LAnissensitizes well Eu (QY of 48%) but cannot sensitize Tb due to the position of its triplet state.
2016
Di Pietro, Sebastiano; Gautier, Nicholas; Imbert, Daniel; Pécaut, Jacques; Mazzanti, Marinella
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11568/924194
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