Zhang Xinyi, Ye Lulu, Chen Weihao, Zhang Xiaofei, Chen Weiwei, Chen Miaogen, Huang Pinwen
Key Laboratory of Intelligent Manufacturing Quality Big Data Tracing and Analysis of Zhejiang Province, College of Science, China Jiliang University, Hangzhou 310018, China.
Zhejiang University of Water Resources and Electric Power, Hangzhou 310018, China.
ACS Omega. 2024 Feb 29;9(10):12060-12068. doi: 10.1021/acsomega.3c09940. eCollection 2024 Mar 12.
Actinide An(III) and lanthanide Ln(III) are known to exhibit similar chemical properties; thus, it is difficult to distinguish them in the separation of highly radioactive waste liquids. One potential method to efficiently separate actinides and lanthanides involves the design and development of phosphorus-oxygen-bonded ligands with solvent extraction separation. Here, a bipyridine phosphate ligand with two isopropyl and phosphate groups is introduced to selectively extract actinides. The electronic structure, bonding properties, thermodynamic behavior, and quantum theory of atoms in molecules (QTAIM) of Am(III) and Eu(III) complexes with the bipyridine phosphate ligands were analyzed by using density functional theory (DFT) calculations. The analysis demonstrates that the Am-N bond exhibits stronger covalent characteristics than the Eu-N bond, indicating that the bipyridine phosphate ligand had better selectivity for Am(III) than for Eu(III) in terms of binding affinity. The thermodynamic analysis established the complex [ML(NO)(HO)] as the most stable species during the complexation process. The results indicate great potential for utilizing the bipyridine phosphate ligand for the effective separation of An(III)/Ln(III) in spent fuel reprocessing experiments.
已知锕系元素An(III)和镧系元素Ln(III)具有相似的化学性质;因此,在高放射性废液的分离中很难区分它们。一种有效分离锕系元素和镧系元素的潜在方法涉及设计和开发用于溶剂萃取分离的磷氧键合配体。在此,引入一种带有两个异丙基和磷酸基团的联吡啶磷酸配体以选择性萃取锕系元素。利用密度泛函理论(DFT)计算分析了镅(III)和铕(III)与联吡啶磷酸配体形成的配合物的电子结构、键合性质、热力学行为以及分子中原子的量子理论(QTAIM)。分析表明,Am-N键比Eu-N键表现出更强的共价特性,这表明就结合亲和力而言,联吡啶磷酸配体对Am(III)的选择性比对Eu(III)更好。热力学分析确定配合物[ML(NO)(HO)]为络合过程中最稳定的物种。结果表明,在乏燃料后处理实验中利用联吡啶磷酸配体有效分离An(III)/Ln(III)具有很大潜力。