Synthesis and Fluorescence Properties of Europium, Terbium Doped Zn^2+, Cd^2+, and Cr^3+ Complexes

Europium and terbium complexes with strong fluorescence intensity and long fluorescence lifetime were prepared. By replacing half of the europium or terbium ion with M (M = Zn^2+, Cd^2+, and Cr^3+) using the doped method, and then incorporating it with 18-crown-6 ether and terephthalic acid, six het...

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Published inJournal of rare earths Vol. 25; no. 6; pp. 679 - 683
Main Author 温孝春 赵永亮 王连蒙 张梅 高德青
Format Journal Article
LanguageEnglish
Published Elsevier B.V 2007
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ISSN1002-0721
2509-4963
DOI10.1016/S1002-0721(08)60006-X

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Summary:Europium and terbium complexes with strong fluorescence intensity and long fluorescence lifetime were prepared. By replacing half of the europium or terbium ion with M (M = Zn^2+, Cd^2+, and Cr^3+) using the doped method, and then incorporating it with 18-crown-6 ether and terephthalic acid, six heteronuclear samples EuZnLL'Cl3·3H2O(1), EuCdLL2'Cl3·5H2O(2), EuCrLL'Cl4· 4H2O(3), TbZnLL'Cl3·4H2O(4), TbCdLL'2Cl3·4H2O(5), and TbCrLL'2Cl4 ·4H2O(6) (L = terephthalic acid, L'= 18-Crown-6 ether) were obtained. The elemental analysis, molar conductivities, rare earth complexometry, Fourier Transform Infrared Spectroscopy (FT-IR), ultraviolet (UV), TGA, fluorescence intensity, and fluorescence lifetime of the samples were measured. The results showed that there were good luminescence properties for heteronuclear complexes (1), (2), (4), and (5), which were even stronger than those of the homonuclear complexes Eu2LL'2Cl4·4H2O and Tb2LL'2Cl4 ·4H2O, but the luminescence properties of EuCrLL'Cl4·4H2O, TbCrLL'Cl4·4H2O were very weak. A possible luminescence mechanism was suggested by the organic-inorganic doped mechanism and the law of intramolecular energy transfer.
Bibliography:europium complex
11-2788/TF
terephthalie acid
terbium complex
crown ether
europium complex; terbium complex; terephthalie acid; crown ether; rare earths
O641.3
O641.4
rare earths
ISSN:1002-0721
2509-4963
DOI:10.1016/S1002-0721(08)60006-X