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Alkenes, 1 -bromo-1- cyclization

A related cyclization of N-sulfonyl-amino-alkenes and NBS gave the bromo-lactam, " and a dichloro-Af,7/-bisallylamide was converted to a dichloro-lactam with FeCl2. ... [Pg.1043]

Addition of halocarbons to alkenes in the presence of transition metals is a well-known radical reaction. Weinreb etal. have now reported an intramolecular version leading to cyclic esters or bicyclic lactones. Typical substrates are the a,a-dichloro ester 1 or the a,a-dichloro acid 2, readily available by reaction of ethyl lithiodi-chloroacetate with 5-bromo-l-pentene. When 1 is heated in benzene at 160° with a metal catalyst, mixtures of epimeric ot,w-dichloro esters 3 and 4 are obtained. The ratio and yields of 3 and 4 are dependent on the catalyst and concentration of 1, but 3 and 4 are the major products formed in the presence of Ru(II) and Fe(II) catalysts. In contrast cyclization of 2 under the same conditions gives the bicyclic y-lactone 5 in high yield. [Pg.130]

Enol lactones with a halogen at the vinylic position have been synthesized as potential mechanism-based inactivators of serine hydrolyases <81JA5459). 5-Hexynoic acids (181) can be cyclized with mercury(II) ion catalysis to y-methylenebutyrolactones (182) (Scheme 41). Cyclization of the 6-bromo and 6-chloro analogues leads stereospecifically to the (Z)-haloenol lactones (trans addition) but is quite slow. Cyclization of unsubstituted or 6-methyl or 6-trimethylsilyl substituted 5-hexynoic acids is more rapid but alkene isomerization occurs during the reaction. Direct halolactonization of the 5-hexynoic acids with bromine or iodine in a two-phase system with phase transfer catalysis was successful in the preparation of various 5-halomethylene- or 5-haloethylidene-2-phenylbutyrolactones and 6-bromo-and iodo-methylenevalerolactones (Scheme 42). [Pg.673]

Satisfactorily, the 1-endo closure became the predominat route when a temporary substituent was introduced at the 6-exo position of the alkene acceptor, a tactic previously used in similar 1-endo cyclizations involving aryl <4TL2335>, vinyl <05JOC519> or alkyl <06OL831> radicals. Hence, cyclization of selenoester 30b, which incorporates a 2-bromo-2-propenyl instead of an allyl moiety, led to the tricyclic substructure of mersicarpine 32 in a synthetically acceptable 62% yield, pyridoindole 31 being now the minor product (19%). The excess hydride ensured the final reductive removal of the bromine atom after the cyclization step <07JOC4562>. [Pg.8]

Enals and enones as well as ketones react with orfho-functionalized bromo-benzenes to give the corresponding cyclized products (cf. Eqs. 22-24). The reaction of o-dibromobenzenes with alkenals gives benzocyclobutane derivatives (Eq. 29) [61]. 1-Naphthol derivatives are produced by using o-bromobenzalde-... [Pg.220]

Aryl radicals participate in radical cyclization reactions when the aromatic ring has an alkene or alkyne substituent. o-Iodo aryl allyl ethers cyclize to benzofuran derivatives, for example, when treated with AIBN, aqueous H3PO2 and NaHCOs in ethanol. Cyclization of an o-bromo-A-acyl aniline (a methacrylic acid derivative) with AIBN/BusSnH gave an indolone under the typical conditions used for cyclization of alkenes. [Pg.1127]

A related cyclization of A-sulfonyl-amino-alkenes and NBS gave the bromo-... [Pg.1156]

Whereas inter- and intramolecular Diels-Alder reactions normally require electron-deficient dienophiles, the 67r-electrocyclization proceeds with a large vaiiety of substituents on a hexatriene. In one such approach, the intramolecular Heck-type reaction of a 2-bromo-1 -en-(ft> — l)-yne 66 is used as a trigger to initiate an intermolecular Heck coupling with an alkene to form the conjugated 1,3,5-hexatriene 67 which eventually cyclizes in a 67T-electrocyclic process (Scheme 3-21) [173]. In many cases, aromatization of the cyclohexadiene 68 formed primarily occurs to yield carbo- and heterobicyclic compounds of type 70 [173a,b]. But with alkyl ethenyl ethers the cyclohexadienes 69 can be obtained in moderate yields [173b]. [Pg.71]

Starting with geraniol (126), Sharpless asymmetric epoxidation [68] proceeded in 95% yield and with 93% ee (see Scheme 29) [69]. Hydrobromination of the alkene was achieved under standard conditions using NBS in THF and water (5 1) to afford a 64% yield of diastereomeric bromo alcohols (127). Cyclization to the tetrahydropyran diol was accomplished by treating 127 with camphorsulphonic acid in diethyl ether, followed by diol cleavage with sodium periodate to give a mixture of aldehydes 128 and 129. Upon... [Pg.42]

Copper and copper salts also mediate transfer of an alkoxycarbonyl(cyano)methylene unit from a-bromo-a-cyanoacetic esters to certain halogenated 1,3-dienes, e.g. formation of This reaction, which has been carried out with various modifications (including the use of ethyl a-chloro-(x-cyanoacetate), gives access to the acid component of several pyrethroid insecticides. In mechanistic terms, a radical 1,2-addition of the a-halogenated ester to the alkene followed by dehydrohalogenative cyclization takes place (cf. Houben-Weyl Vol.4/3, p369). [Pg.417]


See other pages where Alkenes, 1 -bromo-1- cyclization is mentioned: [Pg.473]    [Pg.460]    [Pg.36]    [Pg.978]    [Pg.678]    [Pg.83]    [Pg.354]    [Pg.447]    [Pg.36]    [Pg.371]    [Pg.36]    [Pg.588]    [Pg.887]    [Pg.267]    [Pg.265]    [Pg.209]    [Pg.350]    [Pg.147]    [Pg.105]    [Pg.603]    [Pg.81]    [Pg.1012]    [Pg.1038]    [Pg.1124]    [Pg.859]    [Pg.589]    [Pg.36]    [Pg.589]    [Pg.678]    [Pg.603]    [Pg.678]    [Pg.60]    [Pg.182]   
See also in sourсe #XX -- [ Pg.589 ]




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1- bromo-1-alkenes

Alkenes, 1-bromo-l- cyclization

Cyclization alkenes

Cyclization bromo

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