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Self-Assembly of a Two-Dimensional Coordination Polymer Based on Silver and Lanthanide Tetrakis-Acylpyrazolonates: An Efficient New Strategy for Suppressing Ligand-to-Metal Charge Transfer Quenching of Europium Luminescence
by
Marchetti, Fabio
, Metlina, Darya A.
, Taydakov, Ilya V.
, Yakushev, Ilya A.
, Belousov, Yury A.
, Pettinari, Claudio
, Metlin, Mikhail T.
, Kiskin, Mikhail A.
, Drozdov, Andrei A.
, Polikovskiy, Trofim A.
in
Analysis
/ Charge transfer
/ Coordination polymers
/ Ethanol
/ Europium
/ Gadolinium
/ Ligands
/ Luminescence
/ Luminescence quenching
/ Nitrogen
/ Nitrogen atoms
/ Optical properties
/ Photoluminescence
/ Polymer industry
/ Polymers
/ Quenching
/ Questions and answers
/ Rare earth metals
/ Self-assembly
/ Silver
/ Surface active agents
2023
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Self-Assembly of a Two-Dimensional Coordination Polymer Based on Silver and Lanthanide Tetrakis-Acylpyrazolonates: An Efficient New Strategy for Suppressing Ligand-to-Metal Charge Transfer Quenching of Europium Luminescence
by
Marchetti, Fabio
, Metlina, Darya A.
, Taydakov, Ilya V.
, Yakushev, Ilya A.
, Belousov, Yury A.
, Pettinari, Claudio
, Metlin, Mikhail T.
, Kiskin, Mikhail A.
, Drozdov, Andrei A.
, Polikovskiy, Trofim A.
in
Analysis
/ Charge transfer
/ Coordination polymers
/ Ethanol
/ Europium
/ Gadolinium
/ Ligands
/ Luminescence
/ Luminescence quenching
/ Nitrogen
/ Nitrogen atoms
/ Optical properties
/ Photoluminescence
/ Polymer industry
/ Polymers
/ Quenching
/ Questions and answers
/ Rare earth metals
/ Self-assembly
/ Silver
/ Surface active agents
2023
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Self-Assembly of a Two-Dimensional Coordination Polymer Based on Silver and Lanthanide Tetrakis-Acylpyrazolonates: An Efficient New Strategy for Suppressing Ligand-to-Metal Charge Transfer Quenching of Europium Luminescence
by
Marchetti, Fabio
, Metlina, Darya A.
, Taydakov, Ilya V.
, Yakushev, Ilya A.
, Belousov, Yury A.
, Pettinari, Claudio
, Metlin, Mikhail T.
, Kiskin, Mikhail A.
, Drozdov, Andrei A.
, Polikovskiy, Trofim A.
in
Analysis
/ Charge transfer
/ Coordination polymers
/ Ethanol
/ Europium
/ Gadolinium
/ Ligands
/ Luminescence
/ Luminescence quenching
/ Nitrogen
/ Nitrogen atoms
/ Optical properties
/ Photoluminescence
/ Polymer industry
/ Polymers
/ Quenching
/ Questions and answers
/ Rare earth metals
/ Self-assembly
/ Silver
/ Surface active agents
2023
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Self-Assembly of a Two-Dimensional Coordination Polymer Based on Silver and Lanthanide Tetrakis-Acylpyrazolonates: An Efficient New Strategy for Suppressing Ligand-to-Metal Charge Transfer Quenching of Europium Luminescence
Journal Article
Self-Assembly of a Two-Dimensional Coordination Polymer Based on Silver and Lanthanide Tetrakis-Acylpyrazolonates: An Efficient New Strategy for Suppressing Ligand-to-Metal Charge Transfer Quenching of Europium Luminescence
2023
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Overview
A new strategy for the easy polymerization of anionic [Ln(Qcy)4]− (HQcy-4-(cyclohexanecarbonyl)-5-methyl-2-phenyl-2,4-dihydro-3H-pyrazol-3-one) into two-dimensional layers of [AgLn(Qcy)4]n (Ln = Sm, Eu, Gd, Tb and Dy) is proposed by binding the single molecular anions [Ln(Qcy)4]− to silver cations through the coordination of the pyridinic nitrogen atoms of the pyrazolonate rings. The luminescent properties of [AgLn(Qcy)4]n have been studied in detail, and it was shown that the previously described low photoluminescence quantum yield (PLQY) of [Eu(Qcy)4]− is due to Ligand-To-Metal Charge Transfer (LMCT) quenching, which is effectively suppressed in the heterometallic [AgEu(Qcy)4]n polymer. Sensibilization coefficients for H3O[Eu(Qcy)4], [AgEu(Qcy)4]n, and H3O[Sm(Qcy)4] complexes (n ≈ 1) were estimated via theoretical analysis (also by using Judd-Ofelt theory for Sm3+) and PLQY measurements.
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