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  4. 2,2’-Bipyrimidine as Efficient Sensitizer of the Solid-State Luminescence of Lanthanide and Uranyl Ions from Visible to Near-Infrared
 
research article

2,2’-Bipyrimidine as Efficient Sensitizer of the Solid-State Luminescence of Lanthanide and Uranyl Ions from Visible to Near-Infrared

Zucchi, Gaël
•
Maury, Olivier
•
Thuéry, Pierre
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2009
Chemistry - A European Journal

Treatment of Ln(NO3)3.nH2O with 1 or 2 equiv 2,2-bipyrimidine (BPM) in dry THF readily afforded the monometallic complexes [Ln(NO3)3(bpm)2] (Ln=Eu, Gd, Dy, Tm) or [Ln(NO3)3(bpm)2]THF (Ln=Eu, Tb, Er, Yb) after recrystallization from MeOH or THF, respectively. Reactions with nitrate salts of the larger lanthanide ions (Ln=Ce, Nd, Sm) yielded one of two distinct monometallic complexes, depending on the recrystallization solvent: [Ln(NO3)3(bpm)2].THF (Ln=Nd, Sm) from THF, or [Ln(NO3)3(bpm)(MeOH)2].MeOH (Ln=Ce, Nd, Sm) from MeOH. Treatment of UO2(NO3)2.6H2O with 1 equiv BPM in THF afforded the monoadduct [UO2(NO3)2(bpm)] after recrystallization from MeOH. The complexes were characterized by their crystal structure. Solid-state luminescence measurements on these monometallic complexes showed that BPM is an efficient sensitizer of the luminescence of both the lanthanide and the uranyl ions emitting visible light, as well as of the YbIII ion emitting in the near-IR. For Tb, Dy, Eu, and Yb complexes, energy transfer was quite efficient, resulting in quantum yields of 80.0, 5.1, 70.0, and 0.8 %, respectively. All these complexes in the solid state were stable in air.

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Type
research article
DOI
10.1002/chem.200901517
Web of Science ID

WOS:000270435600013

Author(s)
Zucchi, Gaël
Maury, Olivier
Thuéry, Pierre
Frédéric, Gumy  
Bünzli, Jean-Claude G.  
Ephritikhine, Michel
Date Issued

2009

Published in
Chemistry - A European Journal
Volume

15

Issue

38

Start page

9686

End page

9696

Subjects

bipyrimidine

•

lanthanides

•

luminescence

•

sensitizers

•

solid-state structures

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
LCSL  
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/43769
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