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稀土分离中金属 - 两亲物配合物的离子特异性聚集

Ion-specific clustering of metal-amphiphile complexes in rare earth separations.

作者信息

Nayak Srikanth, Lovering Kaitlin, Uysal Ahmet

机构信息

Chemical Sciences and Engineering Division, Argonne National Laboratory, Argonne, IL 60439, USA.

出版信息

Nanoscale. 2020 Oct 15;12(39):20202-20210. doi: 10.1039/d0nr04231e.

Abstract

The nanoscale structure of a complex fluid can play a major role in the selective adsorption of ions at the nanometric interfaces, which is crucial in industrial and technological applications. Here we study the effect of anions and lanthanide ions on the nanoscale structure of a complex fluid formed by metal-amphiphile complexes, using small angle X-ray scattering. The nano- and mesoscale structures we observed can be directly connected to the preferential transfer of light (La and Nd) or heavy (Er and Lu) lanthanides into the complex fluid from an aqueous solution. While toluene-based complex fluids containing trioctylmethylammonium-nitrate (TOMA-nitrate) always show the same mesoscale hierarchical structure regardless of lanthanide loading and prefer light lanthanides, those containing TOMA-thiocyanate show an evolution of the mesoscale structure as a function of the lanthanide loading and prefer heavy lanthanides. The hierarchical structure indicates the presence of attractive interactions between ion-amphiphile aggregates, causing them to form clusters. A clustering model that accounts for the hard sphere repulsions and short-range attractions between the aggregates has been adapted to model the X-ray scattering results. The new model successfully describes the nanoscale structure and helps in understanding the mechanisms responsible for amphiphile assisted ion transport between immiscible liquids. Accordingly, our results imply different mechanisms of lanthanide transport depending on the anion present in the complex fluid and correspond with anion-dependent trends in rare earth separations.

摘要

复杂流体的纳米级结构在纳米界面处离子的选择性吸附中可能起主要作用,这在工业和技术应用中至关重要。在此,我们使用小角X射线散射研究了阴离子和镧系离子对由金属-两亲配合物形成的复杂流体纳米级结构的影响。我们观察到的纳米和介观尺度结构可以直接与轻(镧和钕)或重(铒和镥)镧系元素从水溶液优先转移到复杂流体中相关联。虽然含有硝酸三辛基甲基铵(TOMA-硝酸盐)的甲苯基复杂流体无论镧系元素负载量如何都始终显示相同的介观层次结构,并且优先选择轻镧系元素,但含有TOMA-硫氰酸盐的流体则显示出介观结构随镧系元素负载量的变化,并且优先选择重镧系元素。这种层次结构表明离子-两亲聚集体之间存在吸引相互作用,导致它们形成簇。一种考虑聚集体之间硬球排斥和短程吸引的聚类模型已被改编用于模拟X射线散射结果。新模型成功地描述了纳米级结构,并有助于理解两亲物辅助离子在不混溶液体之间传输的机制。因此,我们的结果暗示了取决于复杂流体中存在的阴离子的不同镧系元素传输机制,并且与稀土分离中依赖阴离子的趋势一致。

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