Chemical Sciences Division, Oak Ridge National Laboratory, Oak Ridge, Tennessee 37831, United States.
Laboratory of Transuranic Elements, Department of Chemistry, Oregon State University, Corvallis, Oregon 97330, United States.
Inorg Chem. 2020 Dec 7;59(23):17620-17630. doi: 10.1021/acs.inorgchem.0c02861. Epub 2020 Nov 13.
The separation of adjacent lanthanides continues to be a challenge worldwide because of the similar physical and chemical properties of these elements and a necessity to advance the use of clean-energy applications. Herein, a systematic structure-performance relationship approach toward understanding the effect of -alkyl group characteristics in diglycolamides (DGAs) on the separation of lanthanides(III) from a hydrochloric acid medium is presented. In addition to the three most extensively studied DGA complexants [,,','-tetra(-octyl)diglycolamide, TODGA; ,,','-tetra(2-ethylhexyl)diglycolamide, TEHDGA; ,'-dimethyl-,'-di(-octyl)diglycolamide, DMDODGA], 12 new extracting agents with varying substitution patterns were designed to study the interplay of steric and electronic effects that control rare-earth element extraction. Subtle changes in the structure around diglycolamide carbonyl oxygen atoms result in dramatic shifts in the lanthanide extraction strength and selectivity. The effects of the chain length and branching position of -alkyl substituents in DGAs are elaborated on with the use of experimental, computational, and solution-structure characterization techniques.
由于这些元素具有相似的物理和化学性质,并且需要推进清洁能源应用,因此全球范围内仍然难以分离相邻的镧系元素。在此,提出了一种系统的结构-性能关系方法,用于理解二甘醇酰胺(DGA)中 - 烷基基团特性对从盐酸介质中分离镧系元素(III)的影响。除了研究最广泛的三种 DGA 络合剂[,,','-四(- 辛基)二甘醇酰胺,TODGA;,,','-四(2-乙基己基)二甘醇酰胺,TEHDGA;,'-二甲基-,'-二(- 辛基)二甘醇酰胺,DMDODGA]之外,还设计了 12 种具有不同取代模式的新萃取剂,以研究控制稀土元素萃取的空间和电子效应的相互作用。二甘醇酰胺羰基氧原子周围结构的细微变化导致镧系元素萃取强度和选择性的急剧变化。使用实验,计算和溶液结构表征技术详细阐述了 DGA 中 - 烷基取代基的链长和支化位置的影响。