1 Hou, Z., Han, B., Gao, L., Jiang, T., Liu, Z., Chang, Y., Zhang, X., He, J., “Wacker oxidation of 1-hexene in 1-n-butyl-3-methylimidazolium hexafluorophosphate ([bmim][PF6]), supercritical (SC) CO2, and SC CO2/[bmim][PF6] mixed solvent”, New Journal of Chemistry, 26 (9), 1246-1248 (2002).2 Gao, L., Jiang, T., Zhao, G., Mu, T., Wu, W., Hou, Z., Han, B., “Transesterification between isoamyl acetate and ethanol in supercritical CO2, ionic liquid, and their mixture”, The Journal of Supercritical Fluids, 29 (1-2), 107-111 ( 2004).3 Brooke, D.N., Dobbs, A.J., Williams, N., “Octanol: Water partition coefficients (P): Measurement, estimation, and interpretation, particularly for chemicals with P>105”, Ecotoxicology and Environmental Safety, 11 (3), 251-260 (1986);4 Reetz, M.T., Wiesenhöfer, W., Franciò, G., Leitner, W., “Continuous flow enzymatic kinetic resolution and enantiomer separation using ionic liquid/supercritical carbon dioxide media”, Advanced Synthesis & Catalysis, 345 (11), 1221-1228 (2003).5 Kume?an, J., Tuma, D., Maurer, G., “Solubility of CO2 in the ionic liquids [bmim][CH3SO4] and [bmim][PF6]”, Journal of Chemical & Engineering Data, 51 (5), 1802-1807 (2006).6 Kim, Y.S., Choi, W.Y., Jang, J.H., Yoo, K.P., Lee, C.S., “Solubility measurement and prediction of carbon dioxide in ionic liquids”, Fluid Phase Equilibria, 228-229, 439-445 (2005).7 Shiflett, M.B., Yokozeki, A., “Solubilities and diffusivities of carbon dioxide in ionic liquids: [bmim][PF6] and [bmim][BF4]”, Industrial & Engineering Chemistry Research, 44 (12), 4453-4464 (2005).8 Pérez-Salado Kamps, Á., Tuma, D., Xia, J., Maurer, G., “Solubility of CO2 in the ionic liquid [bmim][PF6]”, Journal of Chemical & Engineering Data, 48 (3), 746-749 (2003).9 Morgan, D., Ferguson, L., Scovazzo, P., “Diffusivities of gases in room-temperature ionic liquids: Data and correlations obtained using a lag-time technique”, Industrial & Engineering Chemistry Research, 44 (13), 4815-4823 (2005).10 Blanchard, L.A., Hancu, D., Beckman, E.J., Brennecke, J.F., “Green processing using ionic liquids and CO2”, Nature, 399 (6731), 28-29 (1999).11 Blanchard, L.A., Brennecke, J.F., “Recovery of organic products from ionic liquids using supercritical carbon dioxide”, Industrial & Engineering Chemistry Research, 40 (1), 287-292 (2000).12 Liu, F., Abrams, M.B., Baker, R.T., Tumas, W., “Phase-separable catalysis using room temperature ionic liquids and supercritical carbon dioxide”, Chemical Communications, 5, 433-434 (2001).13 Zhao, G., Jiang, T., Wu, W., Han, B., Liu, Z., Gao, H., “Electro- oxidation of benzyl alcohol in a biphasic system consisting of supercritical CO2 and ionic liquids”, The Journal of Physical Chemistry B, 108 (34), 13052-13057 (2004).14 Liu, Z., Wu, W., Han, B., Dong, Z., Zhao, G., Wang, J., Jiang, T., Yang, G., “Study on the phase behaviors, viscosities, and thermodynamic properties of CO2/[C4mim][PF6]/methanol system at elevated pressures”, Chemistry-A European Journal, 9 (16), 3897-3903 (2003).15 Tomida, D., Kumagai, A., Qiao, K., Yokoyama, C., “Viscosity of 1-butyl-3-methylimidazolium Hexafluorophosphate + CO2 mixture”, Journal of Chemical & Engineering Data, 52 (5), 1638-1640 (2007).16 Qiao, Y., Yan, F., Xia, S., Yin, S., Ma, P., “Densities and viscosities of [Bmim][PF6] and binary systems [Bmim][PF6] + Ethanol, [Bmim][PF6] + Benzene at several temperatures and pressures: Determined by the falling-ball method”, Journal of Chemical & Engineering Data, 56, 2379-2385 (2011). |