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Beckmann rearrangement stereoselectivity

A regio- and stereoselective Beckmann rearrangement utilized diastereose-lective host guest interactions of the inclusion complexes 225 and 228 in a solid state reaction. Initially, a 1 1 mixture of the chiral host 223 and the racemic oximes 224 and 227, respectively, was treated with ultra sound in the solid state to induce the optical resolution. Then H2SO4 was added to start the Beckmann rearrangement, the corresponding c-caprolactams 226 and 229 were isolated in 68 % and 64 % yields and ee of about 80 % and 69 % (determined by HPLC analysis on chiracel OC) (Scheme 43) [46]. [Pg.159]

Another synthetic route via the Beckmann rearrangement, which is promoted by organoaluminum reagent along with alkylation, involves a new stereoselective reduction of the imino group. The starting oxime sulfonate (228) was synthesized from cyclopentanone (226) in three steps Reaction of 226 with 1-undecene in the presence of silver oxide produced the a-undecylcyclopentanone (227) which on successive treatment with hydroxylamine and methanesulfonyl chlo-ride-triethylamine gave the mesylate (228). Treatment of the oxime mesylate... [Pg.242]

The Beckmann rearrangement is used in a similar way to produce the lactam 32, an intermediate in the synthesis of swainsonine 33. Stereoselective addition of dichloroketene to the enol ether 30 gave one isomer ( 95 5) of cyclobutanone 31. Beckmann rearrangement with a sulfonated hydroxylamine and dechlorination gave the lactam 32 in 34% yield over five steps7 from a precursor of 30. Note that the m-alkene 30 gives the trans cyclobutanone selectively. [Pg.253]

Treatment of a wide variety of oxime sulfonates with several equivalents of alkyl-aluminum reagents in CH2CI2 resulted in formation of the imines, which were directly reduced with excess DIBAH to give the corresponding amines, as shown in Sch. 19. This organoaluminum-promoted Beckmann Rearrangement of oxime sulfonates has been successfully applied to the stereoselective synthesis of naturally occurring alkaloids, pumiliotoxin C, and solenopsin A and B, as illustrated in Sch. 20 [43]. [Pg.203]

Gephyrotoxin (106), a constituent of the skin extraas of the poison-dart hrog, was synthesized as outlined in Scheme 11. The organoaluminum-promoted Beckmann rearrangement produced an imine, which was stereoselectively reduced (essentially total selectivity) with DIBAL to a ord piperidine (109 41% yield). [Pg.104]

Treatment of the oxime 6>-mesylate 13 with DIBAL resulted in the formation of the tricyclic benz-3-azepine 14 in a stereoselective tandem Beckmann rearrangement / allylsilane cyclisation <97SL632>. Treatment of ketoximes with divinylketone or its equivalents affords mixtures of the bridged heterocycles 15 and 16 <97TL6099>. In most cases formation of the 7-membered ring predominates, particularly in polar solvents. [Pg.323]


See other pages where Beckmann rearrangement stereoselectivity is mentioned: [Pg.445]    [Pg.206]    [Pg.475]    [Pg.99]    [Pg.99]    [Pg.205]    [Pg.4]    [Pg.46]    [Pg.202]    [Pg.99]    [Pg.524]    [Pg.524]    [Pg.203]    [Pg.205]    [Pg.689]    [Pg.396]    [Pg.689]   
See also in sourсe #XX -- [ Pg.124 ]

See also in sourсe #XX -- [ Pg.124 ]




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Beckmann rearrangment

Rearrangements stereoselective

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