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Sm/Co 磁性材料:一种使用基于三辛基氧化膦的可修饰疏水深共晶溶剂的回收策略。

Sm/Co Magnetic Materials: A Recycling Strategy Using Modifiable Hydrophobic Deep Eutectic Solvents Based on Trioctylphosphine Oxide.

机构信息

Kurnakov Institute of General and Inorganic Chemistry, Russian Academy of Sciences, Leninsky Prospekt 31, 119991 Moscow, Russia.

出版信息

Int J Mol Sci. 2023 Sep 13;24(18):14032. doi: 10.3390/ijms241814032.

Abstract

Hydrophobic deep eutectic solvents (HDES) are widely used as extractants. Usually, when preparing HDES, only the extraction ability of one component is taken into account, with the second serving as an "inert" component, whose effect on the extraction process is not taken into account. The present study demonstrates the possibility of controlling the selectivity of a hydrophobic deep eutectic solvent based on trioctylphosphine oxide (TOPO) by varying the substance that acts as a hydrogen bond donor, but which does not have an extractive ability. In the course of the work, the influence of the "inert" component on the physicochemical and extraction properties of HDES was confirmed by experimental, spectroscopic, and also calculation methods. A number of phenols with different structural features were chosen as the HDES' hydrogen bond donors to modify: phenol (Ph), para-tert-butylphenol (PTBP) and thymol (Th). Using the example of separation of the Sm/Co pair, the influence of the structure of a hydrogen bond donor on the extraction ability of a hydrophobic deep eutectic solvent was established, where the degree of extraction of Sm (III) increased in the series Th:TOPO < PTBP:TOPO < Ph:TOPO. HDES based on TOPO and phenols can potentially be used to separate Sm and Co from the process leach solutions generated during the hydrometallurgical processing of waste SmCo magnets.

摘要

疏水型深共晶溶剂(HDES)被广泛用作萃取剂。通常,在制备 HDES 时,只考虑了其中一个组分的萃取能力,而将第二个组分视为“惰性”组分,其对萃取过程的影响则不予考虑。本研究展示了通过改变作为氢键供体但没有萃取能力的物质,来控制疏水型深共晶溶剂选择性的可能性。在工作过程中,通过实验、光谱和计算方法证实了“惰性”组分对 HDES 的物理化学和萃取性质的影响。选择了一些具有不同结构特征的酚类物质作为 HDES 的氢键供体进行修饰:苯酚(Ph)、对叔丁基苯酚(PTBP)和百里酚(Th)。通过分离 Sm/Co 对的例子,确立了氢键供体结构对疏水型深共晶溶剂萃取能力的影响,其中 Sm(III)的萃取程度按 Th:TOPO < PTBP:TOPO < Ph:TOPO 的顺序增加。基于 TOPO 和酚类物质的 HDES 可能有潜力用于从废弃 SmCo 磁体水冶处理过程中产生的浸出液中分离 Sm 和 Co。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1242/10531512/80e1fa14b8d3/ijms-24-14032-g001.jpg

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