Electro‐kinetic Separation of Rare Earth Elements Using a Redox‐Active Ligand

Purification of rare earth elements is challenging due to their chemical similarities. All of the deployed separation methods rely on thermodynamic properties, such as distribution equilibria in solvent extraction. Rare‐earth‐metal separations based on kinetic differences have not been examined. Her...

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Veröffentlicht in:Angewandte Chemie 2017-10, Vol.129 (43), p.13635-13639
Hauptverfasser: Fang, Huayi, Cole, Bren E., Qiao, Yusen, Bogart, Justin A., Cheisson, Thibault, Manor, Brian C., Carroll, Patrick J., Schelter, Eric J.
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Sprache:eng
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Zusammenfassung:Purification of rare earth elements is challenging due to their chemical similarities. All of the deployed separation methods rely on thermodynamic properties, such as distribution equilibria in solvent extraction. Rare‐earth‐metal separations based on kinetic differences have not been examined. Herein, we demonstrate a new approach for rare‐earth‐element separations by exploiting differences in the oxidation rates within a series of rare earth compounds containing the redox‐active ligand [{2‐(tBuN(O))C6H4CH2}3N]3−. Using this method, a single‐step separation factor up to 261 was obtained for the separation of a 50:50 yttrium–lutetium mixture. Machen wir es kinetisch: Die Trennung von Seltenerdelementen nicht mithilfe thermodynamischer, sondern mithilfe kinetischer Methoden gelingt durch Nutzen der Unterschiede in den Reaktionsgeschwindigkeiten bei der Oxidation von [RE(TriNOx)thf]/[RE(TriNOx)] mit [Cp2Fe][BArF]. TriNOx3−=[{2‐(tBuN(O))C6H4CH2}3N]3−, BArF=Tetra[3,5‐bis(trifluormethyl)phenyl]borat.
ISSN:0044-8249
1521-3757
DOI:10.1002/ange.201706894