首页> 外文期刊>Radiochimica Acta: International Journal for Chemical Aspects of Nuclear Science and Technology >Metal ion selectivities of the highly preorganized tetradentate ligand 1,10-phenanthroline-2,9-dicarboxamide with lanthanide(III) ions and some actinide ions
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Metal ion selectivities of the highly preorganized tetradentate ligand 1,10-phenanthroline-2,9-dicarboxamide with lanthanide(III) ions and some actinide ions

机译:高度预组织的四齿配体1,10-菲咯啉-2,9-二羧酸酰胺与镧系元素(III)离子和一些act系元素离子的金属离子选择性

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摘要

Metal ion complexing properties of the ligand PDAM (1,10-phenanthroline-2,9-dicarboxamide) are reported in relation to its possible use as a functional group for solvent extractants in the separation of Am(III) from Ln(III) (lanthanide) ions. PDAM is only slightly water soluble, but variation of the intense pi-pi* transitions in the UV spectrum of 2 x 10 M PDAM solutions as a function of pH or metal ion concentration allowed for the determination of the protonation constant (pK) and log K-1 values with metal ions. The pK of PDAM is 0.6 +/- 0.1 in 1.0 M NaClO4, the lowest for any 1,10-phenanthroline (phen) derivative (in contrast, pK phen = 5.1), which is attributed to the electron-withdrawing properties of the amide substituents of PDAM. The weak proton basicity of PDAM may be an important factor in its use as the functional group of a solvent extractant from acidic solutions. The formation constants are determined by UV-Visible spectroscopy for the Ln(III) ions from La(III) to Lu(III) (excluding Pm(III)), as well as for Y(III), Sc(III), Th(IV), and the UO22+ cation in 0.1 M NaClO4 at 25 degrees C. The log K-1 values for the Ln(III) ions show only small changes from La(III) to Lu(IIII) (both have log K-1 = 3.80). The amide O-donors (oxygen donors) of the amide groups of PDAM appear to cause considerable stabilization of the complexes of PDAM as compared to those of phen, consistent with the idea that the neutral O-donor is a strong Lewis base towards large metal ions such as the Ln(III) ions. A reviewer has pointed out that the amide groups would also stabilize the complexes of PDAM by virtue of the chelate effect, in that PDAM is tetradentate, while phen is only bidentate. The small change in complex stability for PDAM complexes in passing from La(III) to Lu(III) is rationalized in terms of the idea that neutral O-donors stabilize the complexes of the large La(III) ion more than the smaller Lu(III) ion, offsetting the greater affinity of Lu(III) than La(III) for N-donor ligands. The complexes of Th(IV), Sc(III), and the UO22+ cation with PDAM have log K-1 values slightly higher than those of the Ln(III) cations, while Y(III) forms a slightly less stable complex. The best-fit size of metal ion for coordination with PDAM is analyzed using molecular mechanics calculations. A fluorescence study shows that the free ligand PDAM fluoresces very strongly, but that the Ln(III) cations quench the fluorescence of PDAM rather than produce a chelation enhanced fluorescence (CHEF) effect as Ln(III) ions do with other phen-based tetradentate ligands. Possible reasons for the lack of a CHEF effect with PDAM are discussed,
机译:据报道,配体PDAM(1,10-菲咯啉-2,9-二甲酰胺)的金属离子络合特性与将其用作溶剂萃取剂从Ln(III)分离Am(III)的官能团有关(镧系离子)。 PDAM仅微溶于水,但在2 x 10 M PDAM溶液的紫外光谱中,强烈的pi-pi *跃迁随pH或金属离子浓度的变化决定了质子化常数(pK)和log金属离子的K-1值。在1.0 M NaClO4中,PDAM的pK为0.6 +/- 0.1,这是所有1,10-菲咯啉(phen)衍生物中最低的(相反,pK phen = 5.1),这归因于酰胺的吸电子特性PDAM的取代基。 PDAM的质子碱性弱可能是其用作酸性溶液中溶剂萃取剂的官能团的重要因素。通过紫外可见光谱法确定从La(III)到Lu(III)的Ln(III)离子(不包括Pm(III))以及Y(III),Sc(III),Th的形成常数(IV)和UO22 +阳离子在0.1 M NaClO4中在25摄氏度下的温度。Ln(III)离子的log K-1值仅显示从La(III)到Lu(IIII)的微小变化(均具有log K- 1 = 3.80)。与phen相比,PDAM酰胺基团的酰胺O-供体(氧供体)似乎对PDAM的配合物具有相当大的稳定作用,这与中性O-供体是对大金属的强路易斯碱的想法相一致。离子,例如Ln(III)离子。审查者指出,酰胺基团还可以通过螯合作用稳定PDAM的配合物,因为PDAM是四齿的,而phen仅是双齿的。相对于PDAM配合物从La(III)传递到Lu(III)的复杂稳定性的细微变化,是合理的,因为这样的想法是,中性O供体比大的Lu(III)更稳定大型La(III)离子的配合物。 III)离子,抵消了Lu(III)对La供体配体的亲和力比La(III)高。 Th(IV),Sc(III)和UO22 +阳离子与PDAM的配合物的log K-1值略高于Ln(III)阳离子的log K-1,而Y(III)形成的稳定性稍差。使用分子力学计算分析了与PDAM配合的最佳金属离子尺寸。荧光研究表明,游离配体PDAM发出非常强的荧光,但Ln(III)阳离子淬灭了PDAM的荧光,而不像Ln(III)离子与其他基于酚的四齿离子一样产生螯合增强的荧光(CHEF)效应。配体。讨论了PDAM缺乏CHEF效应的可能原因,

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