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Titanium complexes polymer-attached catalysts

Zrrconium(IV) and hafnium(IV) complexes have also been employed as catalysts for the epoxidation of olefins. The general trend is that with TBHP as oxidant, lower yields of the epoxides are obtained compared to titanium(IV) catalyst and therefore these catalysts will not be discussed iu detail. For example, zirconium(IV) alkoxide catalyzes the epoxidation of cyclohexene with TBHP yielding less than 10% of cyclohexene oxide but 60% of (fert-butylperoxo)cyclohexene °. The zirconium and hafnium alkoxides iu combiuatiou with dicyclohexyltartramide and TBHP have been reported by Yamaguchi and coworkers to catalyze the asymmetric epoxidation of homoallylic alcohols . The most active one was the zirconium catalyst (equation 43), giving the corresponding epoxides in yields of 4-38% and enantiomeric excesses of <5-77%. This catalyst showed the same sense of asymmetric induction as titanium. Also, polymer-attached zirconocene and hafnocene chlorides (polymer-Cp2MCl2, polymer-CpMCls M = Zr, Hf) have been developed and investigated for their catalytic activity in the epoxidation of cyclohexene with TBHP as oxidant, which turned out to be lower than that of the immobilized titanocene chlorides . ... [Pg.419]

They also found that mixtures of bis-(cyclopentadienyl)-titanium dichloride and aluminum triphenyl or bis-(cyclopentadienyl)-titanium diphenyl and aluminum triethyl were active catalysts, and presumably formed similar, bridged complexes. Interestingly, the hydrocarbon substituent attached to aluminum became an end group in the polymer. [Pg.69]


See other pages where Titanium complexes polymer-attached catalysts is mentioned: [Pg.419]    [Pg.1230]    [Pg.46]    [Pg.1230]    [Pg.418]    [Pg.396]    [Pg.396]    [Pg.244]    [Pg.134]    [Pg.134]    [Pg.603]    [Pg.120]   
See also in sourсe #XX -- [ Pg.283 ]

See also in sourсe #XX -- [ Pg.283 ]




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