Complementary interpretation of E T (30) polarity parameters of ionic liquids.

PHYSICAL CHEMISTRY CHEMICAL PHYSICS(2020)

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摘要
Reichardt's empirical E-T(30) polarity parameter has been established as appropriate polarity scale for ionic liquids. In this study, the relationships of E-T(30) of ionic liquids with the empirical Kamlet-Taft polarity parameters alpha (hydrogen bond donating ability), beta (hydrogen bond accepting ability) and pi* (dipolarity/polarizability) as well as Catalan's parameter set SA (solvent acidity), SB (solvent basicity), SP (solvent polarizability) and SdP (solvent dipolarity) are examined by means of multiple square correlation analyses. Several subtasks were carried out to address this main concern. First, the influence of anion structure on E-T(30) polarity parameters for various ionic liquids are investigated by use of nine differently substituted pyridinio phenolate betaine dyes of the Reichardt type. It is assumed that halide anions can have an effect on the E-T(30) parameter. In the second part, the Kamlet-Taft pi* parameters have been independently determined for several protic ionic liquids using 4-tert-butyl-2-(dicyanomethylene)-5-[4-(diethylamino)-benzylidene]-Delta 3-thiazoline (Th) and N,N-diethyl-4-nitroaniline (DENA) to show the impact of the hydrogen bond donating ability of the IL on the actual pi* values as function of probe. alpha and SA values have been measured using the dicyano-bis(1,10-phenanthroline) iron(ii) complex (Fe) as HBD probe. Finally, the newly determined Reichardt E-T(30), Kamlet-Taft and Catalan parameters of ionic liquids were used in addition to literature data to prove correlations of E-T(30) with alpha and pi* as well as of E-T(30) with SA and SdP. Linear correlations of SdP with the molar concentration of the ionic liquid are highlighted.
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