Yang Xiao-Fan, Ren Peng, Yang Qi, Geng Jun-Shan, Zhang Jin-Yu, Yuan Li-Yong, Tang Hong-Bin, Chai Zhi-Fang, Shi Wei-Qun
Laboratory of Nuclear Energy Chemistry, Institute of High Energy Physics, Chinese Academy of Sciences, Beijing 100049, China.
Department of Radiochemistry, China Institute of Atomic Energy, Beijing 102413, China.
Inorg Chem. 2021 Jul 5;60(13):9745-9756. doi: 10.1021/acs.inorgchem.1c01035. Epub 2021 Jun 11.
Phenanthroline-diamide ligands have been reported in the selective separation of actinides over Eu(III); on the contrary, relevant basic coordination chemistry studies are still limited, and extraction under actual application conditions is rarely involved. In this work, -diethyl--ditolyl-2,9-diamide-1,10-phenanthroline [Et-Tol-DAPhen ()] was applied to explore the coordination performance of lanthanides in simulative high-level liquid waste. For the first time, cascade countercurrent extraction was conducted with Et-Tol-DAPhen as the extractant, which reveals the periodic tendency of the extraction efficiency of lanthanides to decrease gradually as the atomic number increases. Comparison of elements with similar radii verifies the hypothesis that the increase in the atomic number leads to a decrease in the ionic radius, thus reducing the coordination and extraction capacity of ligands. Slope analysis, electrospray ionization mass spectrometry, and ultraviolet-visible titration results show that the ligand forms 1:1 and 1:2 complexes with lanthanides and the coordination ability follows the tendency of extraction efficiency, and the first crystal structures of Lns(III) with a phenanthroline-diamide ligand, i.e., [La(NO)(HO)] and [La(NO)][(NO)], were obtained, which confirms the conclusions described above. This work promises to enhance our comprehension of the chemical properties of Lns(III) and offer new clues for the design and synthesis of novel separation ligands.
据报道,菲咯啉二酰胺配体可用于在Eu(III)存在下选择性分离锕系元素;相反,相关的基础配位化学研究仍然有限,且很少涉及实际应用条件下的萃取。在这项工作中,-二乙基--二对甲苯基-2,9-二酰胺-1,10-菲咯啉[Et-Tol-DAPhen ()]被用于探索镧系元素在模拟高放废液中的配位性能。首次以Et-Tol-DAPhen为萃取剂进行了串级逆流萃取,结果表明镧系元素的萃取效率随原子序数增加而逐渐降低的周期性趋势。对具有相似半径的元素进行比较,验证了原子序数增加导致离子半径减小,从而降低配体的配位和萃取能力这一假设。斜率分析、电喷雾电离质谱和紫外-可见滴定结果表明,该配体与镧系元素形成1:1和1:2的配合物,且配位能力遵循萃取效率的趋势,并且获得了镧系元素(III)与菲咯啉二酰胺配体的首个晶体结构,即[La(NO)(HO)]和[La(NO)][(NO)],这证实了上述结论。这项工作有望增进我们对镧系元素(III)化学性质的理解,并为新型分离配体的设计和合成提供新线索。