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  4. Luminescent Lanthanide Helicates Self-Assembled from Ditopic Ligands Bearing Phosphonic Acid or Phosphoester Units
 
research article

Luminescent Lanthanide Helicates Self-Assembled from Ditopic Ligands Bearing Phosphonic Acid or Phosphoester Units

Chauvin, Anne-Sophie  
•
Comby, Steve  
•
Baud, Matthias
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2009
Inorganic Chemistry

A series of hexadentate ditopic receptors incorporating benzimidazole moieties have been designed, which are fitted with phosphonic acid or phosphoethylester coordinating units. In addition, poly(oxyethylene) pendants have been introduced on the benzimidazole backbone of two ligands to increase water solubility. The ligands self-assemble with lanthanide ions under stoichiometric conditions, yielding triple-stranded homobimetallic helicates, as ascertained by mass spectrometry and UV-visible titrations. The helicates display large thermodynamic stability, for example, log β23 ≈ 21-24 for all the EuIII complexes. Photophysical measurements reveal sensitization of the metal-centered luminescence in the europium and terbium complexes, which is modulated by the nature of the ligand. Hydration numbers determined by the lifetime method are essentially zero. The Eu(5D0) lifetimes are long and reach values up to 3.2 ms, while quantum yields as high as 25% are obtained in water at pH 7.4. Back transfer limits the sensitization efficiency for TbIII luminescence, and both lifetimes and quantum yields are much smaller. The properties of the helicates are discussed with respect to those self-assembled from ligands bearing carboxylate coordinating units.

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Type
research article
DOI
10.1021/ic901424w
Web of Science ID

WOS:000271428600028

Author(s)
Chauvin, Anne-Sophie  
Comby, Steve  
Baud, Matthias
De Piano, Cyntia
Duhot, Céline
Bünzli, Jean-Claude G.  
Date Issued

2009

Published in
Inorganic Chemistry
Issue

48

Start page

10687

End page

10696

Subjects

Photophysical Properties

•

Living Cells

•

Optical Probes

•

Pendant Arms

•

In-Vitro

•

Complexes

•

Bioprobes

•

Europium

•

Water

•

Microscopy

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
LCSL  
Available on Infoscience
November 10, 2009
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/44119
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