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摘要:
Diglycolamides (DGAs) show excellent application prospects for the extraction and separation of rare earth metals from highly radioactive liquid wastes and rare earth ores. The extraction ability of DGAs for rare earth ions in nitrate or chloride media increases with increasing atomic number of the rare earth metal. To understand the origin of this phenomenon, three binuclear crystals [Ln(TEDGA)3][Ln(NO3)6] of N,N,N′,N′-tetraethyldiglycolamide (TEDGA) with rare earth ions La(Ⅲ), Pr(Ⅲ) and Eu(Ⅲ) were prepared and characterized crystallographically. The three complexes belong to the triclinic crystal system, P-1 space group. The bond lengths of Ln-Oamide are significantly shorter than those of Ln-Oether in the same crystal. The Ln-Oamide and Ln-Oether bond lengths gradually decrease with increasing atomic number of the rare earth ion. The dihedral angle formed by TEDGA and metal ions through the tridentate coordi-nation gradually increases with increasing metal ion atomic number, tending toward the formation of sizeable planar coordination structures for the most massive rare earth ions. The structures of the compounds formed by the extractant and metal ion were optimized by means of DFT simulations. We find that the interaction between TEDGA and the rare earth ion is dominated by electrostatic interaction by analyzing binding energy, WBIs, Mulliken charge, natural electron configurations, and molecular orbital interaction. The covalent component of the Ln-O bonds of the complexes increases with increasing metal atomic number. The observed increase in extraction and separation capacity of digly-colamides for rare earth ions with increasing atomic number might be due to the formation of two five-member rings by one tridentate ligand. The rare earth ions with large atomic numbers tend to form planar structures with large dihedral angles with DGA ligands.
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篇名 Theoretical elucidation of rare earth extraction and separation by diglycolamides from crystal structures and DFT simulations☆
来源期刊 稀土学报(英文版) 学科
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年,卷(期) 2021,(7) 所属期刊栏目 CHEMISTRY AND HYDROMETALLURGY
研究方向 页码范围 858-865
页数 8页 分类号
字数 语种 英文
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期刊影响力
稀土学报(英文版)
月刊
1002-0721
11-2788/TF
大16开
北京新街口外大街2号中国稀土学报编辑部
2-613
1990
eng
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