Research demonstrates efficient extraction of lanthanides using ionic liquids in undiluted form, highlighting the role of anion selection and salting agents.
Ionic liquids derived from methyltrioctylammonium chloride [N 1888 ][Cl]) play a vital role in governing the coordination and separation process. At the same time, the feed phase salting agent may take a crucial stand in evaluating the metal ion extracting power of ILs. To understand the same, we have chosen couple of ILs based on [N 1888 + ] ion with anions: nitrate (NO 3 − ), thiocyanate (SCN − ) and bistrifluoromethanesulfonylimide (NTf 2 − ) in their undiluted conditions for the separation of lanthanides (Ln(III) from the feed solution with europium (III) (Eu(III)) as the representative ion. The order of extraction in these ILs follows with respect to anions as [SCN − ] > [NO 3 − ] >> [NTf 2 − ] in presence of their respective salting agents. For instance, The % E values were evaluated to be 95%, 60%, and 20% in [N 1888 ][SCN], [N 1888 ][NO 3 ], and [N 1888 ][NTf 2 ] with the help of 4 M NH 4 SCN, NH 4 NO 3 , and LiNTf 2 respectively present in the feed phase. The anion essence was explored spectroscopically to support the extraction results by inferring the formation of a mixed anionic complex in IL phase. Effect of temperature on the extraction was persued and Milli‐Q water as the stripping agent offers added merit to the system by removing all the loaded Eu(III) within 2 ‐3 contacts.
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Rout et al. (2025) studied this question.
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