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大环含氮供体萃取剂对镅(III)/铕(III)的配位及分离能力的理论研究

Theoretical Study on the Coordination and Separation Capacity of Macrocyclic N-Donor Extractants for Am(III)/Eu(III).

作者信息

Liang Yu Ting, Bai Shan Qin, Zhang Yi Ying, Li An Yong

机构信息

School of Chemistry and Chemical Engineering, Southwest University, Chongqing 400715, P. R. China.

出版信息

J Phys Chem A. 2023 Aug 24;127(33):6865-6880. doi: 10.1021/acs.jpca.3c01629. Epub 2023 Aug 15.

Abstract

Designing ligands that can effectively separate actinide An(III)/lanthanide Ln(III) in the solvent extraction process remains one of the key issues in the treatment of accumulated spent nuclear fuel. Nitrogen donor ligands are considered as promising extractants for the separation of An(III) and Ln(III) due to their environmental friendliness. Four new macrocyclic N-donor hexadentate extractants were designed and their coordination with Am(III) and Eu(III), as well as their extraction selectivity and separation performance for Am(III) and Eu(III), were investigated by scalar relativistic density functional theory. A variety of theoretical methods have been used to evaluate the properties of the four ligands and the coordination structures, bonding properties, and thermodynamic properties of the complexes formed by the four ligands with Am(III) and Eu(III). The results of various wavefunction analysis methods including NBO analysis, quantum theory of atoms in molecules (QTAIM) analysis, and so on show that Am(III) has a stronger coordination ability with the ligands than Eu(III) due to the Am 5f orbitals more involved in bonding with the ligands than the Eu 4f orbitals, and the bonding environment of the N-donor in the ligand has a significant effect on its coordination ability of the metal ions. Thermodynamic analysis of the solvent extraction process shows that all of the four N-containing macrocyclic ligands have good extraction selectivity and separation performance for Am(III) and Eu(III). This study provides theoretical support for designing potential nitrogen-containing macrocyclic extractants with excellent separation performance.

摘要

设计出在溶剂萃取过程中能够有效分离锕系元素An(III)/镧系元素Ln(III)的配体,仍然是处理累积乏核燃料的关键问题之一。含氮供体配体因其环境友好性,被认为是分离An(III)和Ln(III)的有前景的萃取剂。设计了四种新型大环含氮六齿萃取剂,并通过标量相对论密度泛函理论研究了它们与Am(III)和Eu(III)的配位情况,以及它们对Am(III)和Eu(III)的萃取选择性和分离性能。已使用多种理论方法来评估这四种配体的性质以及这四种配体与Am(III)和Eu(III)形成的配合物的配位结构、键合性质和热力学性质。包括NBO分析、分子中的原子量子理论(QTAIM)分析等各种波函数分析方法的结果表明,由于Am的5f轨道比Eu的4f轨道更多地参与与配体的键合,所以Am(III)与配体的配位能力比Eu(III)更强,并且配体中含氮供体的键合环境对其与金属离子的配位能力有显著影响。溶剂萃取过程的热力学分析表明,所有这四种含氮大环配体对Am(III)和Eu(III)都具有良好的萃取选择性和分离性能。本研究为设计具有优异分离性能的潜在含氮大环萃取剂提供了理论支持。

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