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Telomers Terminal olefins

In the case of terminal olefins it was found that the major product of the reaction was the 1 1 adduct resulting from an anti-Markovnikov addition of formamide to the double bond. Products resulting from Mar-kovnikov-addition of formamide to olefins were also obtained, but in poor yields. In addition, smaller yields of higher telomers were also formed. In the case of nonterminal olefins mixtures of the two possible amides (1 1 adducts) were obtained. These amides resulted from addition... [Pg.88]

Although various transition-metal complexes have reportedly been active catalysts for the migration of inner double bonds to terminal ones in functionalized allylic systems (Eq. 3.2) [5], prochiral allylic compounds with a multisubstituted olefin (Rl, R2 H in eq 2) are not always susceptible to catalysis or they show only a low reactivity [Id]. Choosing allylamines 1 and 2 as the substrates for enantioselective isomerization has its merits (1) optically pure citronellal, which is an important starting material for optically active terpenoids such as (-)-menthol, cannot be obtained directly from natural sources [6], and (2) both ( )-allylamine 1 and (Z)-allylamine 2 can be prepared in reasonable yields from myrcene or isoprene, respectively, The ( )-allylamine 1 is obtained from the reaction of myrcene and diethylamine in the presence of lithium diethylamide under Ar in an almost quantitative yield (Eq. 3.3) [7], The (Z)-allylamine 2 can also be prepared with high selectivity (-90%) by Li-catalyzed telomerization of isoprene using diethylamine as a telomer (Eq. 3.4) [8], Thus, natural or petroleum resources can be selected. [Pg.146]


See other pages where Telomers Terminal olefins is mentioned: [Pg.45]    [Pg.538]    [Pg.1319]    [Pg.91]    [Pg.83]   


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Telomers

Terminal olefins

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