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  4. Benzothiazole- and Benzoxazole-Substituted Pyridine-2-Carboxylates as Efficient Sensitizers of Europium Luminescence
 
research article

Benzothiazole- and Benzoxazole-Substituted Pyridine-2-Carboxylates as Efficient Sensitizers of Europium Luminescence

Shavaleev, Nail M.
•
Scopelliti, Rosario  
•
Gumy, Frédéric  
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2009
Inorganic Chemistry

A facile synthesis of benzothiazole- and benzoxazole-substituted pyridine-2-carboxylic acids has been developed. These ligands form mononuclear nine-coordinate complexes [Ln(κ3-ligand)2(κ1-ligand)(H2O)2] with light and heavy trivalent lanthanides, as established from the X-ray analysis of 11 complexes. A crystal structure of a minor product, the anhydrous nine-coordinate complex [Eu(κ3-L)3], has also been determined. Photophysical studies of gadolinium chelates indicate that the triplet states of the new ligands are located at 20400-21400 cm-1. The ligands are good sensitizers of the europium luminescence with ligand-to-metal energy transfer efficiency in the range 60-100%. The overall quantum yields of the europium emission are substantial, 12-14% in the solid state, and increase to 29-39% upon replacement of two metal-coordinated water molecules with dimethylsulfoxide in solution. The luminescence of near-infrared emitting lanthanides is also sensitized, but quantum yields are much smaller, reaching 0.17% for neodymium and 1.25% for ytterbium in DMSO, while energy transfer efficiencies for these two ions are below 50%.

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Type
research article
DOI
10.1021/ic9005136
Web of Science ID

WOS:000267507400071

Author(s)
Shavaleev, Nail M.
Scopelliti, Rosario  
Gumy, Frédéric  
Bünzli, Jean-Claude G.  
Date Issued

2009

Published in
Inorganic Chemistry
Volume

48

Start page

6178

End page

6191

Subjects

Bond-Valence Parameters

•

Near-Infrared Luminescence

•

Aqueous Solvent Mixtures

•

Metal-Ion Solvation

•

Lanthanide Complexes

•

Crystal-Structure

•

Photophysical Properties

•

Highly Luminescent

•

Rare-Earth

•

Anhydrous Acetonitrile

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
LCSL  
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/41263
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