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3-aryloxy-1-alkene 2-alken

Other functionalized supports that are able to serve in the asymmetric dihydroxylation of alkenes were reported by the groups of Sharpless (catalyst 25) [88], Sal-vadori (catalyst 26) [89-91] and Cmdden (catalyst 27) (Scheme 4.13) [92]. Commonly, the oxidations were carried out using K3Fe(CN)g as secondary oxidant in acetone/water or tert-butyl alcohol/water as solvents. For reasons of comparison, the dihydroxylation of trons-stilbene is depicted in Scheme 4.13. The polymeric catalysts could be reused but had to be regenerated after each experiment by treatment with small amounts of osmium tetroxide. A systematic study on the role of the polymeric support and the influence of the alkoxy or aryloxy group in the C-9 position of the immobilized cinchona alkaloids was conducted by Salvadori and coworkers [89-91]. Co-polymerization of a dihydroquinidine phthalazine derivative with hydroxyethylmethacrylate and ethylene glycol dimethacrylate afforded a functionalized polymer (26) with better swelling properties in polar solvents and hence improved performance in the dihydroxylation process [90]. [Pg.218]

Alcohols add to certain substituted olefins (ketene acetals such as 1,1-di-aryloxy-l-alkenes) to form ortho esters [120a-c], The reaction has been reported to be acid-catalyzed [121a, b] but it may be carried out under basic conditions [120a-c, 122a, b, 123a, b] without any other catalysts. [Pg.288]


See other pages where 3-aryloxy-1-alkene 2-alken is mentioned: [Pg.2296]    [Pg.33]    [Pg.2018]    [Pg.2024]    [Pg.2094]    [Pg.2094]    [Pg.2094]    [Pg.2112]    [Pg.2141]    [Pg.2141]    [Pg.2163]    [Pg.2196]    [Pg.2203]    [Pg.2203]    [Pg.2203]    [Pg.2224]    [Pg.2272]    [Pg.2377]    [Pg.2513]    [Pg.455]    [Pg.2018]    [Pg.2021]    [Pg.2024]    [Pg.2094]    [Pg.2094]    [Pg.2094]   
See also in sourсe #XX -- [ Pg.235 , Pg.897 ]




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