Highly efficient diglycolamide‐based task‐specific ionic liquids: synthesis, unusual extraction behaviour, irradiation, and fluorescence studies

PK Mohapatra, A Sengupta, M Iqbal… - … A European Journal, 2013 - Wiley Online Library
Chemistry–A European Journal, 2013Wiley Online Library
Two new diglycolamide‐based task‐specific ionic liquids (DGA TSILs) were evaluated for
the extraction of actinides and lanthanides from acidic feed solutions. These DGA TSILs
were capable of exceptionally high extraction of trivalent actinide ions, such as Am3+, and
even higher extraction of the lanthanide ion, Eu3+ (about 5–10 fold). Dilution of the DGA
TSILs in an ionic liquid, C4mim+⋅ NTf2−, afforded reasonably high extraction ability, faster
mass transfer, and more efficient stripping of the metal ion. The nature of the extracted …
Abstract
Two new diglycolamide‐based task‐specific ionic liquids (DGATSILs) were evaluated for the extraction of actinides and lanthanides from acidic feed solutions. These DGATSILs were capable of exceptionally high extraction of trivalent actinide ions, such as Am3+, and even higher extraction of the lanthanide ion, Eu3+ (about 5–10 fold). Dilution of the DGATSILs in an ionic liquid, C4mim+NTf2, afforded reasonably high extraction ability, faster mass transfer, and more efficient stripping of the metal ion. The nature of the extracted species was studied by slope analysis, which showed that the extracted species contained one NO3 anion, along with the participation of two DGATSIL molecules. Time‐resolved laser fluorescence spectroscopy (TRLFS) analysis showed a strong complexation with no inner‐sphere water molecule in the EuIIIDGATSIL complexes in the presence and absence of C4mim+NTf2 as the diluent. The very high radiolytic stability of DGATSIL 6 makes it one of the most‐efficient solvent systems for the extraction of actinides under acidic feed conditions.
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