首页> 外文OA文献 >Hydrophilic sulfonated bis-1,2,4-triazine ligands are highly effective reagents for separating actinides(iii) from lanthanides(iii) via selective formation of aqueous actinide complexes
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Hydrophilic sulfonated bis-1,2,4-triazine ligands are highly effective reagents for separating actinides(iii) from lanthanides(iii) via selective formation of aqueous actinide complexes

机译:亲水的磺化双1,2,4-三嗪配体是通过选择性形成of系元素水合物从separating化物(iii)中分离act系元素(iii)的高效试剂

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摘要

We report the first examples of hydrophilic 6,6′-bis(1,2,4-triazin-3-yl)-2,2′-bipyridine (BTBP) and 2,9-bis(1,2,4-triazin-3-yl)-1,10-phenanthroline (BTPhen) ligands, and their applications as actinide(III) selective aqueous complexing agents. The combination of a hydrophobic diamide ligand in the organic phase and a hydrophilic tetrasulfonated bis-triazine ligand in the aqueous phase is able to separate Am(III) from Eu(III) by selective Am(III) complex formation across a range of nitric acid concentrations with very high selectivities, and without the use of buffers. In contrast, disulfonated bis-triazine ligands are unable to separate Am(III) from Eu(III) in this system. The greater ability of the tetrasulfonated ligands to retain Am(III) selectively in the aqueous phase than the corresponding disulfonated ligands appears to be due to the higher aqueous solubilities of the complexes of the tetrasulfonated ligands with Am(III). The selectivities for Am(III) complexation observed with hydrophilic tetrasulfonated bis-triazine ligands are in many cases far higher than those found with the polyaminocarboxylate ligands previously used as actinide-selective complexing agents, and are comparable to those found with the parent hydrophobic bis-triazine ligands. Thus we demonstrate a feasible alternative method to separate actinides from lanthanides than the widely studied approach of selective actinide extraction with hydrophobic bis-1,2,4-triazine ligands such as CyMe4-BTBP and CyMe4-BTPhen.
机译:我们报告了亲水的6,6'-双(1,2,4-三嗪-3-基)-2,2'-联吡啶(BTBP)和2,9-双(1,2,4-三嗪)的第一个例子-3-基)-1,10-菲咯啉(BTPhen)配体及其作为act系元素(III)选择性水性络合剂的应用。有机相中的疏水性二酰胺配体与水相中的亲水性四磺化双三嗪配体的组合能够通过在一定范围的硝酸中选择性形成Am(III)络合物而将Am(III)与Eu(III)分离选择性非常高的浓度,并且无需使用缓冲液。相反,在该系统中,二磺化双三嗪配体无法将Am(III)与Eu(III)分开。与相应的二磺化配体相比,四磺化配体选择性地将Am(III)保留在水相中的能力似乎更大,这是由于四磺化配体与Am(III)的配合物具有更高的水溶解度。在许多情况下,用亲水性四磺化双三嗪配体观察到的Am(III)络合选择性远高于以前用作act系元素选择性络合剂的聚氨基羧酸酯配体所发现的选择性,并且与亲代疏水性双三嗪配体。因此,与使用疏水性双1,2,4-三嗪配体(例如CyMe4-BTBP和CyMe4-BTPhen)进行选择性act系元素萃取的方法相比,我们证明了从镧系元素中分离act系元素的可行替代方法。

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