首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >Exploring Soft Donor Character of the N-2-Pyrazinylmethyl Group by Coordinating Trivalent Actinides and Lanthanides Using Aminopolycarboxylates
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Exploring Soft Donor Character of the N-2-Pyrazinylmethyl Group by Coordinating Trivalent Actinides and Lanthanides Using Aminopolycarboxylates

机译:通过使用氨基聚羧酸盐协调三价散曲线和镧系元素来探索N-2-吡嗪基甲基的软供体特征

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The trivalent f-element coordination chemistry of a novel amino-polycarboxylate complexant was investigated. The novel reagent is an octadentate complexant that resembles diethylenetriamine-N,N,N',N '',N ''-pentaacetic acid (DTPA), but a single N-acetate pendant arm was substituted with a N-2-pyrazinylmethyl functional group. Thermodynamic studies of ligand protonation and trivalent lanthanide, americium and curium, complexation by N-2-pyrazinylmethyldiethylenetriamine-N,N',N '',N ''-tetraacetic acid (DTTA-PzM) emphasize the strong electron withdrawing influence of the N-2-pyrazinylmethyl group. Specifically, DTTA-PzM is more acidic compared to a N-2-pyridinylmethyl-substituted structural equivalent, DTTA-PyM, with a substantial lowering of pK(7), corresponding to the protonation of a second aliphatic amine site. The participation of the pyrizyl nitrogen in the metal ion coordination sphere is evident from the fluorescence lifetime decay measurements of metal hydration and the interpretation of the stability constants for ML- and MHL(aq) complexes. The overall conditional stability constants for the trivalent f-element complexation by DTTA-PzM complexes decrease, relative to DTTA-PyM, as expected based on the lower basicity of pyrazine in water relative to pyridine. Replacement of the N-2-pyridinylmethyl group with N-2-pyrazinylmethyl, while enhancing the total acidity of DTTA-PzM, also reduces its softness, as manifested by a small lowering of beta(Am/)(Nd)(101) and liquid-liquid separation of trivalent lanthanides from trivalent americium. Despite this, the 4f/5f separation is doubled when DTTA-PzM replaces DTPA as an aqueous complexant in solvent extraction.
机译:研究了新型氨基 - 多羧酸酯络合物的三价F元素配位化学。新型试剂是八月络合物,其类似于二亚乙基三胺-N,N,N',N'',N' - 乙酸(DTPA),但是单个N-乙酸酯侧臂被N-2-吡嗪基甲基官能团取代团体。配体质子化和三价镧系元素的热力学研究,含有N-2-吡嗪基甲基二乙基甲基丙二氨基丙二氨基丙二酸二齐胺-N,N',N',N' - 乙酸(DTTA-PZM)强调了N的强电子抽吸影响-2-吡嗪基甲基。具体地,与N-2-吡啶基甲基取代的结构当量,DTTA-PYM相比,DTTA-PZM更加酸性,具有显着降低的PK(7),对应于第二脂族胺位点的质子化。从金属水合的荧光寿命衰减测量和ML-和MHL(AQ)配合物的稳定性常数的解释是明显的,吡嗪氮在金属离子配位球体中的参与是明显的。 DTTA-PZM复合物的三价F元素络合物的整体条件稳定性常数相对于DTTA-PYM,根据吡啶水中吡嗪的较低碱性降低,如预期的那样。用N-2-吡嗪基甲基替换N-2-吡啶基甲基,同时增强DTTA-PZM的总酸度,也降低了其柔软性,如β(AM /)(ND)(101)的小降低的那样表现出来三价亚美洲三价镧系元素的液体液体分离。尽管如此,当DTTA-PZM将DTPA作为溶剂萃取中的含水络合剂取代DTPA时,4F / 5F分离加倍。

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