The chemical structure of a new gemini dicationic imidazolium ionic liquid,was established by 1 HNMR. The thermal stability of [C 6 O 2 (mim) 2 ][PF 6 ] 2 was studied with differential scanning calorimetry and thermogravimetric analyses. With the use of the analytical stirred-flask method at atmospheric pressure, the solubilities of [C 6 O 2 (mim) 2 ]-[PF 6 ] 2 in water, methanol, ethanol, dimethylformamide, dimethyl sulfoxide, and (acetone + water) binary solvent mixtures were measured from (283.00 to 323.00) K. The experimental data was correlated with the modified Apelblat equation.
3,3′-(Oxidi-2,1-ethanediyl)bis[1-methyl-imidazolium]
dihexafluorophosphate
([C4O(mim)2][PF6]2) was
synthesized and confirmed with 1H NMR and FT-IR. The thermal
stability of [C4O(mim)2][PF6]2 was studied with differential scanning calorimetry and thermogravimetric
analyses. Using the dynamic method, the solubility of [C4O(mim)2][PF6]2 in five different
pure solvents (water, methanol, ethanol, acetone, and acetonitrile)
and binary mixtures (water + DMF) was measured at the temperature
range from (283.00 to 323.00 K) at atmospheric pressure. The solubility
of [C4O(mim)2][PF6]2 in
those selected solvents increased with increasing temperature and
DMF contents, but the rate of solubility is different. The experimental
data were correlated with the modified Apelblat equation. Also, the
solubility of [C4O(mim)2][PF6]2 and [C6O2(mim)2][PF6]2 was been compared in the same solvent.
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