Title of article :
A Schiff-Base Bibracchial Lariat Ether Forming a Cryptand-like Cavity for Lanthanide Ions
Author/Authors :
Platas-Iglesias، Carlos نويسنده , , Geraldes، Carlos F. G. C. نويسنده , , Gonzalez-Lorenzo، Marina نويسنده , , Avecilla، Fernando نويسنده , , Blas، Andres de نويسنده , , Imbert، Daniel نويسنده , , Bunzli، Jean-Claude G. نويسنده , , Rodriguez-Blas، Teresa نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2003
Pages :
-6945
From page :
6946
To page :
0
Abstract :
We report here a structural and photophysical study of lanthanide(III) complexes with the di-deprotonated form of the bibracchial lariat ether N,Nʹ-bis (2-salicylaldiminobenzyl)-1,10-diaza-15-crown-5. The X-ray crystal structures of [Ce(L2-2H)](ClO4)·0.5H2O (2) and [Sm(L2-2H)](ClO4)·C3H8O (5b) show the metal ion being nine-coordinated and deeply buried in the cavity of the dianionic receptor. Thanks to the formation of a pseudomacrocycle through (pi)-(pi) interaction between one of the phenol rings and one of the benzyl rings, the complexes present a cryptand-like structure in the solid state. 1H and 13C NMR studies on the La(III) complex point that the solid state structure is essentially maintained in acetonitrile solution. Highresolution laser-excited emission spectra of the crystalline Eu(III) complex demonstrate the presence of several coordination sites arising from different conformations of the crown moiety. The ligand-to-Eu(III) energy transfer is relatively efficient at low temperature, but back transfer is implied in the deactivation process, especially at room temperature, because the ligand triplet state lies at very low energy. However, the low energy of the 3(pi)(pi)* state provides an efficient conversion of the visible light absorbed into near-infrared light emitted by the Nd(III) ion.
Keywords :
Oscillations , Partial oxidation , Complete oxidation , Metal catalysts , Methane oxidation
Journal title :
INORGANIC CHEMISTRY
Serial Year :
2003
Journal title :
INORGANIC CHEMISTRY
Record number :
67350
Link To Document :
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