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首页> 外文期刊>Helvetica chimica acta >LANTHANIDE COMPLEXES OF POLYACID LIGANDS DERIVED FROM 2,6-BIS(PYRAZOL-1-YL)PYRIDINE, PYRAZINE, AND 6,6'-BIS(PYRAZOL-1-YL)-2,2'-BIPYRIDINE - SYNTHESIS AND LUMINESCENCE PROPERTIES
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LANTHANIDE COMPLEXES OF POLYACID LIGANDS DERIVED FROM 2,6-BIS(PYRAZOL-1-YL)PYRIDINE, PYRAZINE, AND 6,6'-BIS(PYRAZOL-1-YL)-2,2'-BIPYRIDINE - SYNTHESIS AND LUMINESCENCE PROPERTIES

机译:2,6-双(吡唑-1-基)吡啶,吡嗪和6,6'-双(吡唑-1-基)-2,2'-联吡啶衍生的聚丙烯酸酯类化合物的镧系元素配合物-合成和发光性能

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摘要

The synthesis of three novel pyrazole-containing complexing acids, N,N,N',N'-{2,6-bis[3-(aminomethyl)pyrazol-1-yl]-4-methoxypyridine}tetrakis {acetic acid) (1), N,N,N',N'-{2,6-bis[3-(aminomethyl)pyrazo-1-yl]pyrazine}-tetrakis(acetic acid) (2), and N,N,N',N'-{6,6'-bis[3-(aminomethyl)pyrazol-1-yl]-2,2'-bipyridine}tetrakis( acetic acid) (3) is described. Ligands 1-3 formed stable complexes with Eu-III, Tb-III, Sm-III, and Dy-III in H2O whose relative luminescence yields, tripler-state energies, and emission decay lifetimes were measured. The number of H2O molecules in the first coordination sphere of the lanthanide ion were also determined. Comparison of data from the Eu-III and Tb-III complexes of 1-3 and those of the parent trisheterocycle N,N,N',N'-{2,6-bis[3-(aminomethyl)pyrazol-l-yl]pyridine}tetrakis(acetic acid) showed that the modification of the pyridine ring for pyrazine or 2,2'- bipyridine strongly modify the luminescence properties of the complexes. MeO Substitution at C(4) of 1 maintain the excellent properties described for the parent compound and give an additional functional group that will serve for attaching the label to biomolecules in bioaffinity applications. [References: 46]
机译:三种新型含吡唑的络合酸N,N,N',N'-{2,6-双[3-(氨基甲基)吡唑-1-基] -4-甲氧基吡啶}四{乙酸}的合成( 1),N,N,N',N'-{2,6-双[3-(氨基甲基)吡唑-1-基]吡嗪}-四(乙酸)(2)和N,N,N'描述了N,-{6,6′-双[3-(氨基甲基)吡唑-1-基] -2,2′-联吡啶}四(乙酸)(3)。配体1-3与H3O中的Eu-III,Tb-III,Sm-III和Dy-III形成稳定的络合物,并测量了其相对发光产率,三态能量和发射衰减寿命。还确定了镧系元素离子的第一配位域中H2O分子的数量。 1-3与Eu-III和Tb-III配合物与母体三杂环N,N,N',N'-{2,6-双[3-(氨基甲基)吡唑-1-基]吡啶}四(乙酸)表明,对吡嗪或2,2'-联吡啶的吡啶环进行了修饰,强烈修饰了配合物的发光性能。 C(4)为1时的MeO取代保持了对母体化合物所述的优异性能,并提供了一个附加的官能团,该官能团可用于在生物亲和性应用中将标签连接到生物分子上。 [参考:46]

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