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(Reference retrieved automatically from Web of Science through information on FAPESP grant and its corresponding number as mentioned in the publication by the authors.)

The influence of carboxilate, phosphinate and seleninate groups on luminescent properties of lanthanides complexes

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Author(s):
Monteiro, Jorge H. S. K. [1] ; Formiga, Andre L. B. [1] ; Sigoli, Fernando A. [1]
Total Authors: 3
Affiliation:
[1] Univ Estadual Campinas, UNICAMP, Inst Chem, Lab Funct Mat, BR-13083970 Campinas, SP - Brazil
Total Affiliations: 1
Document type: Journal article
Source: Journal of Luminescence; v. 154, p. 22-31, OCT 2014.
Web of Science Citations: 17
Abstract

The lanthanides(III) complexes {[}Ln(bza)(3)(H2O)(n)]center dot mH(2)O, {[}Ln(ppa)(3)(H2O)(n)]center dot mH(2)O and {[}Ln(abse)(3)(H2O)(n)]center dot mH(2)O where Ln=Eu3+, Gd3+ or Tb3+ were synthesized using sodium benzoate (Nabza), sodium phenylseleninate (Naabse) and sodium phenylphosphinate (Nappa) in order to verify the influence on coordination modes and the luminescence parameters when the carbon is exchanged by phosphorus or selenium in those ligands. The complexes' stoichiometries were determined by lanthanide(III) titration, microanalysis and TGA. The coordination modes were determined as bidentate bridging and chelate by the FT-IR. The triplet state energies of the ligands were obtained by two different approaches giving a difference of about similar to 2000 cm(-1) between them. The {[}Eu(abse)(3)(H2O)] complex shows the higher degree of covalence which was verified by the centroid of D-5(0)-> F-7(0) transition (17,248 cm(-1)). On the other hand the {[}Ln(abse)(3)(H2O)] mH(2)O complexes have an inefficient antenna effect verified by the low values of absolute emission quantum yields. The {[}Ln(ppa)(3)(H2O)5]center dot mH(2)O complexes have higher emission decay lifetime values among the complexes which is a result of the ability of this ligand to form coordination polymers avoiding water molecules in the first coordination sphere. The {[}Eu(ppa)(3)] complex has the highest point symmetry around europium(III) among the synthesized complexes, followed by the {[}Eu (bza)(3)(H2O)(2)]center dot 3/2(H2O) and {[}Eu(abse)(3)(H2O)] complexes where europium(III) show similar point symmetries. As one may expect, the triplet state energy position would change the transfer and/or back energy transfer rates from ligand to metal. The calculation of these rates show that the back energy transfer rates are more affected than the transfer ones by changing the triplet state energy in the range of similar to 2000 cm(-1). The changes in the energy transfer rates from triplet state to europium(III) levels are not sufficient to significantly modify the population of the europium(III) D-5(0,1) levels and therefore the emission quantum yield. (C) 2014 Elsevier B.V. All rights reserved. (AU)

FAPESP's process: 09/54066-7 - Multi-User Laboratory for Advanced Optical Spectroscopy
Grantee:Yoshitaka Gushikem
Support Opportunities: Multi-user Equipment Program
FAPESP's process: 08/53868-0 - Synthesis and chacterization of novel materials strategically structured and organized to be applied in analytical and photonic devices
Grantee:Lauro Tatsuo Kubota
Support Opportunities: Research Projects - Thematic Grants