Wang Shihui, Yang Xiaofan, Liu Yaoyang, Xu Lei, Xu Chao, Xiao Chengliang
College of Chemical and Biological Engineering, Zhejiang University, Hangzhou 310058, China.
Institute of Nuclear and New Energy Technology, Tsinghua University, Beijing 100084, China.
Inorg Chem. 2024 Feb 12;63(6):3063-3074. doi: 10.1021/acs.inorgchem.3c03997. Epub 2024 Jan 29.
Phenanthroline diamide ligands have been widely used in the separation of trivalent actinides and lanthanides, but little research has focused on extractants with asymmetrical substitutes. Two novel asymmetrical phenanthroline-based ligands ,,-triethyl--tolyl-1,10-phenanthroline-2,9-dicarboxamide (DE-ET-DAPhen) and -ethyl-,-dioctyl--tolyl-1,10-phenanthroline-2,9-dicarboxamide (DO-ET-DAPhen) were first synthesized in this work, whose extraction ability and complexation mechanism to trivalent actinides [An(III)] and lanthanides [Ln(III)] were systematically investigated. The ligands dissolved in n-octanol exhibit good extraction ability and high selectivity toward Am(III) in acidic solutions. The complexation mechanism of the ligands with Ln(III) in solution and solid state was analyzed using slope analysis, H NMR spectrometric titration, ESI-MS, and calorimetric titration. It is revealed that the ligands complex with Am(III)/Eu(III) with 1:1 stoichiometry. The stability constant (log β) of the complexation reaction of Eu(III) with DE-ET-DAPhen determined by UV-vis spectrophotometric and calorimetric titration is higher than that of DO-ET-DAPhen, indicating the stronger complexation ability of DE-ET-DAPhen. Meanwhile, the calorimetric titration results show that the complexation process is exothermic with a decreased entropy. The structures of 1:1 complexes of Eu(III) and Nd(III) with DE-ET-DAPhen were analyzed through single-crystal X-ray diffraction. This work proves that ligands containing asymmetrical functional groups are promising for An(III)/Ln(III) separation, which shows great significance in efficient extractants designed for the spent nuclear fuel reprocessing process.
菲咯啉二酰胺配体已被广泛应用于三价锕系元素和镧系元素的分离,但对具有不对称取代基的萃取剂的研究较少。本文首次合成了两种新型的基于菲咯啉的不对称配体,即,,-三乙基- -甲苯基-1,10-菲咯啉-2,9-二羧酰胺(DE-ET-DAPhen)和-乙基-,,-二辛基- -甲苯基-1,10-菲咯啉-2,9-二羧酰胺(DO-ET-DAPhen),并系统研究了它们对三价锕系元素[An(III)]和镧系元素[Ln(III)]的萃取能力及络合机理。溶解于正辛醇中的这些配体在酸性溶液中对Am(III)表现出良好的萃取能力和高选择性。利用斜率分析、1H NMR光谱滴定、ESI-MS和量热滴定法分析了配体与溶液和固态Ln(III)的络合机理。结果表明,配体与Am(III)/Eu(III)以1:1化学计量比络合。通过紫外可见分光光度法和量热滴定法测定,Eu(III)与DE-ET-DAPhen络合反应的稳定常数(log β)高于DO-ET-DAPhen,表明DE-ET-DAPhen的络合能力更强。同时,量热滴定结果表明络合过程是放热的,且熵减小。通过单晶X射线衍射分析了Eu(III)和Nd(III)与DE-ET-DAPhen的1:1配合物的结构。这项工作证明,含有不对称官能团的配体在An(III)/Ln(III)分离方面具有潜力,这对于为乏核燃料后处理过程设计高效萃取剂具有重要意义。