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Selenols , addition alkenes

A number of useful enantioselective syntheses can be performed by attaching a chiral auxihary group to the selenium atom of an appropriate reagent. Examples of such chiral auxiliaries include (49-53). Most of the asymmetric selenium reactions reported to date have involved inter- or intramolecular electrophilic additions to alkenes (i.e. enantioselective variations of processes such as shown in equations (23) and (15), respectively) but others include the desymmefrization of epoxides by ringopening with chiral selenolates, asymmetric selenoxide eliminations to afford chiral allenes or cyclohexenes, and the enantioselective formation of allylic alcohols by [2,3]sigmafropic rearrangement of allylic selenoxides or related species. [Pg.4326]

Another group of cinchona alkaloids lacks the 6 -mclhoxy group. Cinchonine (7) and its diastereomer cinchonidine (5) are commercially available and have been used as catalysts in the addition of zinc alkyls to aldehydes (Section D. 1.3.1.4.). Cinchonidine and dihydrocin-chonidine (6) were used to modify the surface of platinum catalysts used in the enantioselective reduction of z-oxo esters to a-hydroxy esters (see Section D.2.3.1. for such applications). Dihydrocinchonidine may conveniently be obtained by catalytic reduction of the double bond of cinchonidine, e.g., with nickel and hydrogen7. Cinchonidine also acts as a catalyst in the enantioselective formation of C-S and C-Se bonds by the addition of thiols and selenols to activated alkenes, such as 1-nitroalkenes (Sections D.5. and D.6.). Another application is the enantioselective protonation of kelenes (SectionD.2.I.). [Pg.19]

They also revealed that primary alkyl-, vinyl-, and aryl-substituted acy radicals generated by treating selenol esters with Bu3SnH can be utilized in intermole-cular alkene addition reactions (Eq. 48) [99,98b]. Acyl radicals exhibit nucleophilic character and react efficiently with alkenes bearing electron-withdrawing or radical-stabilizing groups. [Pg.124]

Addition Reactions. Treating terminal alkynes with benzene-selenol in the presence of Pd(OAc)2 and pyridine results in highly regioselective hydroselenation of the triple bond and provides the corresponding 2-phenylselenyl-substituted alkene as the exclusive product of reaction (eq 79). ... [Pg.468]


See other pages where Selenols , addition alkenes is mentioned: [Pg.770]    [Pg.305]    [Pg.4317]    [Pg.4316]    [Pg.162]    [Pg.362]   
See also in sourсe #XX -- [ Pg.1045 ]




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Selenols , addition

Selenols alkenes

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