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Reactions in supercritical

Reactions. Supercritical fluids are attractive as media for chemical reactions. Solvent properties such as solvent strength, viscosity, diffusivity, and dielectric constant may be adjusted over the continuum of gas-like to Hquid-like densities by varying pressure and temperature. Subsequently, these changes can be used to affect reaction conditions. A review encompassing the majority of studies and apphcations of reactions in supercritical fluids is available (96). [Pg.227]

Diels-Alder Reaction in Supercritical Carbon Dioxide (sc-COi)... [Pg.286]

Leitner W (1999) Reactions in Supercritical Carbon Dioxide (SCCO2). 206 107-132... [Pg.262]

The development of CO2 fixation reactions in supercritical CO2 attracts increasing attention due to its gas-like low viscosities and high diffusivities and its liquid-like solubilizing power. Matsuda et al. attempted to carry out the con-... [Pg.98]

Diels-Alder reactions in supercritical water have also been investigated.57 Kolis has shown that Diels-Alder reactions of dienes with various electron-poor dienophiles can be performed in supercritical water with high yields of the desired product without the addition of... [Pg.385]

Another interesting application of high-pressure tubes is the in-situ investigation of reactions in supercritical solvents such as carbon dioxide. For example, the iridium-catalyzed enantioselective hydrogenation of imines was investigated in a sapphire tube at 313 K [32]. [Pg.308]

The several theoretical and/or simulation methods developed for modelling the solvation phenomena can be applied to the treatment of solvent effects on chemical reactivity. A variety of systems - ranging from small molecules to very large ones, such as biomolecules [236-238], biological membranes [239] and polymers [240] -and problems - mechanism of organic reactions [25, 79, 223, 241-247], chemical reactions in supercritical fluids [216, 248-250], ultrafast spectroscopy [251-255], electrochemical processes [256, 257], proton transfer [74, 75, 231], electron transfer [76, 77, 104, 258-261], charge transfer reactions and complexes [262-264], molecular and ionic spectra and excited states [24, 265-268], solvent-induced polarizability [221, 269], reaction dynamics [28, 78, 270-276], isomerization [110, 277-279], tautomeric equilibrium [280-282], conformational changes [283], dissociation reactions [199, 200, 227], stability [284] - have been treated by these techniques. Some of these... [Pg.339]

Hu and Truhlar have recently reported a modeling transition state solvation at a single-water representation [295]. Recent experimental advances leading to the study of SN2 reactions of gas-phase microsolvated clusters which can advantageously been studied with ab initio electronic theory. These experiments and theoretical studies are quite relevant to chemical reactions in supercritical water. [Pg.345]

T. Ikariya, R. Noyori, Organic Reactions in Supercritical Fluids , In Transition Metal Catalyzed Reactions, (Eds. S.-... [Pg.25]

T. Clifford, K. Bartle, Chemical Reactions in Supercritical Fluids , Chem. Ind. 1996, 449-452. [Pg.25]

P. E. Savage, Organic Reactions in Supercritical Water , Chem Rev. 1999, 99, 603-621, and references cited therein. [Pg.25]

Instead of performing the polymerization reactions in supercritical C02 (we do not yet have access to this technology), we chose the dispersion polymerization in 1,1,2-trichlorotrifluoroethane (Freon 113), to serve as a model for supercritical C02. We only used the short diblock copolymers for the polymerization of styrene in Freon 113, since it is known that such diblock copolymers are the most efficient steric stabilizers. [Pg.158]

DIELS-ALDER REACTIONS IN SUPERCRITICAL CARBON DIOXIDE... [Pg.155]

Leitner W (1999) In Knochel P (ed) Reactions in Supercritical Carbon Dioxide (scC02) in Modern Solvent Systems. Top Curr Chem 206 107 Morita DK, David SK (1998) Chem Commun, p 1397 Wegner A, Leitner W (1999) Chem Commun, p 1583 Sellin M, Cole-Hamilton DJ (2000) J Chem Soc, Dalton Trans, p 1681 Solinas M, Pfaltz A, Leitner W (2004) J Am Chem Soc 126 16124 Leitner W, Scurto AM (1998) Imobilization of Organometallic Catalysts using Supercritical Fluids. In Cornils B, Herrmann WA (eds) Aqueous Organometallic Catalysis. WUey, Weinheim, p 664... [Pg.17]


See other pages where Reactions in supercritical is mentioned: [Pg.284]    [Pg.284]    [Pg.286]    [Pg.288]    [Pg.299]    [Pg.235]    [Pg.203]    [Pg.199]    [Pg.263]    [Pg.99]    [Pg.210]    [Pg.219]    [Pg.228]    [Pg.344]    [Pg.48]    [Pg.344]    [Pg.357]    [Pg.358]    [Pg.18]    [Pg.18]    [Pg.20]    [Pg.22]    [Pg.143]    [Pg.144]    [Pg.144]    [Pg.208]    [Pg.333]    [Pg.258]   


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Catalytic Reactions in Supercritical Fluids

Chemical reactions in supercritical fluids

Diels-Alder Reaction in Supercritical Carbon Dioxide

Diels-Alder Reaction in Supercritical Fluids

Diels-Alder reaction in supercritical water

Diels-Alder reactions in supercritical

Diels-Alder reactions in supercritical carbon dioxid

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Practical Aspects of Reactions in Supercritical Fluids (SFRs)

Reaction rate implication in supercritical solvents

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