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Synthesis alcohols, tert

Membrane catalysts use a polymeric support. Polymer composites based on PPE as polymeric support with HPAs are used as a catalysts. The HPA-polymer composites are prepared by blending HEA with the polymer in a methanol/chloroform solvent mixture. These composites are active in the synthesis of tert-butyl alcohol, ethyl tert-butyl ether and in some reactions involving ethanol and MTBE. A PPE-based membrane reactor showed the best performance, among some other polymer membranes tested. [Pg.161]

Lei Z, Yang Y, Li Q, Chen B. Catalytic distillation for the synthesis of tert-butyl alcohol with structured catalytic packing. Catal. Today 2009 147S S352-S356. [Pg.294]

Sodium/alcohol Synthesis with tert. amines... [Pg.485]

Trialky lalanes Stereospecific synthesis of tert. alcohols from ketones Steric effect of solvents... [Pg.164]

Crich, D. and Fortt, S. M., A new method for the synthesis of tert-alkyl chlorides from tert-alcohols. [Pg.1350]

Allylic alcohols can be converted to epoxy-alcohols with tert-butylhydroperoxide on molecular sieves, or with peroxy acids. Epoxidation of allylic alcohols can also be done with high enantioselectivity. In the Sharpless asymmetric epoxidation,allylic alcohols are converted to optically active epoxides in better than 90% ee, by treatment with r-BuOOH, titanium tetraisopropoxide and optically active diethyl tartrate. The Ti(OCHMe2)4 and diethyl tartrate can be present in catalytic amounts (15-lOmol %) if molecular sieves are present. Polymer-supported catalysts have also been reported. Since both (-t-) and ( —) diethyl tartrate are readily available, and the reaction is stereospecific, either enantiomer of the product can be prepared. The method has been successful for a wide range of primary allylic alcohols, where the double bond is mono-, di-, tri-, and tetrasubstituted. This procedure, in which an optically active catalyst is used to induce asymmetry, has proved to be one of the most important methods of asymmetric synthesis, and has been used to prepare a large number of optically active natural products and other compounds. The mechanism of the Sharpless epoxidation is believed to involve attack on the substrate by a compound formed from the titanium alkoxide and the diethyl tartrate to produce a complex that also contains the substrate and the r-BuOOH. ... [Pg.1053]

Clay-supported heteropoly acids such as H3PW12O40 are more active and selective heterogeneous catalysts for the synthesis of MTBE from methanol and tert-butanol, etherification of phenethyl alcohols with alkanols, and alkylation of hydroquinone with MTBE and tert-butanoi (Yadav and Kirthivasan, 1995 Yadav and Bokade, 1996 Yadav and Doshi, 2000), and synthesis of bisphenol-A (Yadav and Kirthivasan, 1997). [Pg.138]

The activity of the FePeCli6-S/tert-butyl hydroperoxide (TBHP) catalytic system was studied under mild reaction conditions for the synthesis of three a,p-unsaturated ketones 2-cyclohexen-l-one, carvone and veibenone by allylic oxidation of cyclohexene, hmonene, and a-pinene, respectively. Substrate conversions were higher than 80% and ketone yields decreased in the following order cyclohexen-1-one (47%), verbenone (22%), and carvone (12%). The large amount of oxidized sites of monoterpenes, especially limonene, may be the reason for the lower ketone yield obtained with this substrate. Additional tests snggested that molecular oxygen can act as co-oxidant and alcohol oxidation is an intermediate step in ketone formation. [Pg.435]


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See also in sourсe #XX -- [ Pg.27 , Pg.671 ]




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