Effects of constituent ions of a phosphonium-based ionic liquid on molecular organization of H 2 O as probed by 1-propanol: tetrabutylphosphonium and trifluoroacetate ions

Aqueous solutions of tetrabutylphosphonium trifluoroacetate, [P 4444 ]CF 3 COO, exhibit a liquid–liquid phase transition with a lower critical solution temperature. Herein, we characterized the constituent ions, [P 4444 ] + and CF 3 COO − , in terms of their effects on the molecular organization of...

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Veröffentlicht in:Physical chemistry chemical physics : PCCP 2015, Vol.17 (34), p.22170-22178
Hauptverfasser: Morita, Takeshi, Miki, Kumiko, Nitta, Ayako, Ohgi, Hiroyo, Westh, Peter
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Sprache:eng
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Zusammenfassung:Aqueous solutions of tetrabutylphosphonium trifluoroacetate, [P 4444 ]CF 3 COO, exhibit a liquid–liquid phase transition with a lower critical solution temperature. Herein, we characterized the constituent ions, [P 4444 ] + and CF 3 COO − , in terms of their effects on the molecular organization of H 2 O on the basis of 1-propanol probing methodology devised by Koga et al. The resulting characterization of the hydrophobicity/hydrophilicity is displayed on a two-dimensional map together with previous results, for a total of four cations and nine anions of typical ionic liquid (IL) constituents. The results indicate that [P 4444 ] + is the most significant amphiphile with strong hydrophobic and equally strong hydrophilic contributions among the group of constituent cations of ILs studied so far. The hydration number for [P 4444 ] + was evaluated to be n H = 72, which is three times larger than that of a typical imidazolium-based cation, [C 4 mim] + . Self-aggregation of [P 4444 ] + was found to occur in an aqueous solution of [P 4444 ]CF 3 COO above 0.0080 mole fraction of the IL.
ISSN:1463-9076
1463-9084
DOI:10.1039/C5CP02329G