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机构地区:[1]College of Chemistry & Material Science, Hebei Normal University [2]Experimental Center, Hebei Normal University
出 处:《Journal of Rare Earths》2007年第S1期37-40,共4页稀土学报(英文版)
基 金:the National Natural Science Foundation of China (50472020);the Natural Science Foundation of He-bei Province (B2007000237);Hebei Education Department (2006125) and Hebei Normal University
摘 要:In order to obtain an excellent luminescent material, herein four complexes of Eu(Ⅲ) were synthesized with dibenzoylmethane (DBM), benzoic acid (BA) and phenylacetic acid (PLA) as the anion ligands, and 1, 10-phenanthroline (phen) as the neutral ligand. The complexes Eu(DBM)3phen (1), Eu(DBM)(BA)2phen (2), Eu(DBM)(PLA)2phen (3) and Eu(DBM)2(PLA)phen (4) were characterized by elemental analysis, IR and TG-DTG. In these complexes, the Eu(Ⅲ) ions are bonded to the oxygen atoms of carboxylate (or dibenzoylmethane), and the nitrogen atoms of phen. The TG-DTG analysis indicated that these complexes are thermally stable. Their excitation and luminescence spectra revealed that the complexes emitted the characteristic luminescence of Eu(Ⅲ): 579 nm (5D0→7F0), 589 nm (5D0→7F1), 610 nm (5D0→7F2). The emission peak at ca. 610 nm was the most intensive. The order of their fluorescence intensity was: Eu(DBM)2(PLA)phen (4)>Eu(DBM)(PLA)2phen (3)>Eu(DBM)3phen (1)>Eu(DBM)(BA)2phen (2).In order to obtain an excellent luminescent material, herein four complexes of Eu(Ⅲ) were synthesized with dibenzoylmethane (DBM), benzoic acid (BA) and phenylacetic acid (PLA) as the anion ligands, and 1, 10-phenanthroline (phen) as the neutral ligand. The complexes Eu(DBM)3phen (1), Eu(DBM)(BA)2phen (2), Eu(DBM)(PLA)2phen (3) and Eu(DBM)2(PLA)phen (4) were characterized by elemental analysis, IR and TG-DTG. In these complexes, the Eu(Ⅲ) ions are bonded to the oxygen atoms of carboxylate (or dibenzoylmethane), and the nitrogen atoms of phen. The TG-DTG analysis indicated that these complexes are thermally stable. Their excitation and luminescence spectra revealed that the complexes emitted the characteristic luminescence of Eu(Ⅲ): 579 nm (5D0→7F0), 589 nm (5D0→7F1), 610 nm (5D0→7F2). The emission peak at ca. 610 nm was the most intensive. The order of their fluorescence intensity was: Eu(DBM)2(PLA)phen (4)>Eu(DBM)(PLA)2phen (3)>Eu(DBM)3phen (1)>Eu(DBM)(BA)2phen (2).
关 键 词:EUROPIUM DIBENZOYLMETHANE 1 10-PHENANTHROLINE fluorescence rare earths
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