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Identical extraction behavior and coordination of trivalent or hexavalent f-element cations using ionic liquid and molecular solvents
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Citations
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References
2005
Year
Solvent ExtractionEngineeringOrganic ChemistryChemistryChemical EngineeringSelective SeparationAnalytical ChemistryBiphasic Extraction EquilibriaAnion SensingAdvanced SeparationChromatographyMaterials ScienceInorganic ChemistryIonic LiquidTrivalent LanthanideIon ExchangeIdentical Extraction BehaviorSeparation TechnologyPhysical ChemistryDeep Eutectic SolventIonic ConductorMolecular Solvents
The extraction of both UO2(2+) and trivalent lanthanide and actinide ions (Am3+, Nd3+, Eu3+) by dialkylphosphoric or dialkylphosphinic acids from aqueous solutions into the ionic liquid, 1-decyl-3-methylimidazolium bis(trifluoromethanesulfonyl)imide has been studied and compared to extractions into dodecane. Radiotracer partitioning measurements show comparable patterns of distribution ratios for both the ionic liquid/aqueous and dodecane/aqueous systems, and the limiting slopes at low acidity indicate the partitioning of neutral complexes in both solvent systems. The metal ion coordination environment, elucidated from EXAFS and UV-visible spectroscopy measurements, is equivalent in the ionic liquid and dodecane solutions with coordination of the uranyl cation by two hydrogen-bonded extractant dimers, and of the trivalent cations by three extractant dimers. This is the first definitive report of a system where both the biphasic extraction equilibria and metal coordination environment are the same in an ionic liquid and a molecular organic solvent.
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