Continuous flow hydroformylation using supported ionic liquid phase catalysts with carbon dioxide as a carrier.
暂无分享,去创建一个
Ana Serbanovic | Ulrich Hintermair | Mark J Muldoon | C. Santini | M. Muldoon | Ulrich Hintermair | D. Cole-Hamilton | Zenxing Gong | A. Serbanovic | David J Cole-Hamilton | Zenxing Gong | Catherine C Santini
[1] Peter Wasserscheid,et al. Propene and 1-Octene Hydroformylation with Silica-Supported, Ionic Liquid-Phase (SILP) Rh-Phosphine Catalysts in Continuous Fixed-Bed Mode , 2003 .
[2] D. Cole-Hamilton,et al. Aqueous-biphasic hydroformylation of higher alkenes promoted by alkylimidazolium salts. , 2007, Chemical communications.
[3] Peter Licence,et al. Chemical reactions in supercritical carbon dioxide: from laboratory to commercial plantThis work was presented at the Green Solvents for Catalysis Meeting held in Bruchsal, Germany, 13–16th October 2002. , 2003 .
[4] Martyn Poliakoff,et al. Continuous, selective hydroformylation in supercritical carbon dioxide using an immobilised homogeneous catalyst , 2000 .
[5] A. Riisager,et al. Stability and Kinetic Studies of Supported Ionic Liquid Phase Catalysts for Hydroformylation of Propene , 2005 .
[6] P. B. Webb,et al. Continuous flow homogeneous catalysis: hydroformylation of alkenes in supercritical fluid–ionic liquid biphasic mixtures , 2001 .
[7] A. Riisager,et al. First application of supported ionic liquid phase (SILP) catalysis for continuous methanol carbonylation. , 2006, Chemical communications.
[8] P. B. Webb,et al. Continuous flow homogeneous hydroformylation of alkenes using supercritical fluids , 2005 .
[9] J. Brennecke,et al. Recovery of Organic Products from Ionic Liquids Using Supercritical Carbon Dioxide , 2001 .
[10] Walter Leitner,et al. Enantioselective hydrogenation of imines in ionic liquid/carbon dioxide media. , 2004, Journal of the American Chemical Society.
[11] D. Cole-Hamilton,et al. Homogeneous Catalysis--New Approaches to Catalyst Separation, Recovery, and Recycling , 2003, Science.
[12] David J. Cole-Hamilton,et al. Aqueous-biphasic hydroformylation of alkenes promoted by “weak” surfactants , 2009 .
[13] I. Horváth,et al. Facile Catalyst Separation Without Water: Fluorous Biphase Hydroformylation of Olefins , 1994, Science.
[14] E. G. Hope,et al. A continuous process concept for homogeneous catalysis in fluorous biphasic systems , 2004 .
[15] C. Santini,et al. Supported ionic liquid phase catalysis with supercritical flow. , 2007, Chemical communications.
[16] Raymond A. Cook,et al. Supported ionic liquid catalysis--a new concept for homogeneous hydroformylation catalysis. , 2002, Journal of the American Chemical Society.
[17] G. Wilkinson,et al. 600. Dicarbonyl-β-diketonato- and related complexes of rhodium(I) , 1964 .
[18] István T. Horváth,et al. Fluorous Biphase Chemistry , 1998 .
[19] A. Riisager,et al. Supported Ionic Liquid Phase (SILP) Catalysis: An Innovative Concept for Homogeneous Catalysis in Continuous Fixed-Bed Reactors , 2006 .
[20] A. Riisager,et al. Very stable and highly regioselective supported ionic-liquid-phase (SILP) catalysis: continuous-flow fixed-bed hydroformylation of propene. , 2005, Angewandte Chemie.
[21] W. Leitner,et al. Activation, Tuning, and Immobilization of Homogeneous Catalysts in an Ionic Liquid/Compressed CO2 Continuous-Flow System. , 2001, Angewandte Chemie.
[22] Dan Hancu,et al. Green processing using ionic liquids and CO2 , 1999, Nature.
[23] A. Riisager,et al. Continuous fixed-bed gas-phase hydroformylation using supported ionic liquid-phase (SILP) Rh catalysts , 2003 .
[24] J. Reek,et al. A silica-supported, switchable, and recyclable hydroformylation-hydrogenation catalyst. , 2001, Journal of the American Chemical Society.
[25] A. Slawin,et al. Continuous flow hydroformylation of alkenes in supercritical fluid-ionic liquid biphasic systems. , 2003, Journal of the American Chemical Society.
[26] C. P. Mehnert. Supported ionic liquid catalysis. , 2004, Chemistry.
[27] Raymond A. Cook,et al. Supported ionic liquid catalysis investigated for hydrogenation reactions. , 2002, Chemical communications.
[28] W. Leitner,et al. Continuous Enantioselective Hydrogenation with a Molecular Catalyst in Supported Ionic Liquid Phase under Supercritical CO2 Flow , 2010 .
[29] D. Cole-Hamilton,et al. Carbon dioxide induced phase switching for homogeneous-catalyst recycling. , 2009, Angewandte Chemie.
[30] C. Eckert,et al. CO2-Induced miscibility of fluorous and organic solvents for recycling homogeneous catalysts , 2004 .
[31] Joan F. Brennecke,et al. High-Pressure Phase Behavior of Ionic Liquid/CO2 Systems , 2001 .