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Carbon-carbon bond formation by radical addition-fragmentation reactions of O-alkylated enols.
Org Biomol Chem. 2004 Sep 07; 2(17):2517-29.OB

Abstract

Alpha-tert-butoxystyrene [H2C=C(OBut)Ph] reacts with alpha-bromocarbonyl or alpha-bromosulfonyl compounds [R1R2C(Br)EWG; EWG =-C(O)X or -S(O2)X] to bring about replacement of the bromine atom by the phenacyl group and give R1R2C(EWG)CH2C(O)Ph. These reactions take place in refluxing benzene or cyclohexane with dilauroyl peroxide or azobis(isobutyronitrile) as initiator and proceed by a radical-chain mechanism that involves addition of the relatively electrophilic radical R1R2(EWG)C* to the styrene. This is followed by beta-scission of the derived alpha-tert-butoxybenzylic adduct radical to give But*, which then abstracts bromine from the organic halide to complete the chain. Alpha-1-adamantoxystyrene reacts similarly with R1R2C(Br)EWG, at higher temperature in refluxing octane using di-tert-amyl peroxide as initiator, and gives phenacylation products in generally higher yields than are obtained using alpha-tert-butoxystyrene. Simple iodoalkanes, which afford relatively nucleophilic alkyl radicals, can also be successfully phenacylated using alpha-1-adamantoxystyrene. O-Alkyl O-(tert-butyldimethylsilyl) ketene acetals H2C=C(OR)OTBS, in which R is a secondary or tertiary alkyl group, react in an analogous fashion with organic halides of the type R1R2C(Br)EWG to give the carboxymethylation products R1R2C(EWG)CH2CO2Me, after conversion of the first-formed silyl ester to the corresponding methyl ester. The silyl ketene acetals also undergo radical-chain reactions with electron-poor alkenes to bring about alkylation-carboxymethylation of the latter. For example, phenyl vinyl sulfone reacts with H2C=C(OBut)OTBS to afford ButCH2CH(SO2Ph)CH2CO2Me via an initial silyl ester. In a more complex chain reaction, involving rapid ring opening of the cyclopropyldimethylcarbinyl radical, the ketene acetal H2C=C(OCMe2C3H5-cyclo)OTBS reacts with two molecules of N-methyl- or N-phenyl-maleimide to bring about [3 + 2] annulation of one molecule of the maleimide, and then to link the bicyclic moiety thus formed to the second molecule of the maleimide via an alkylation-carboxymethylation reaction.

Authors+Show Affiliations

Christopher Ingold Laboratories, Department of Chemistry, University College London, 20 Gordon Street, London, UKWC1H 0AJ.No affiliation info availableNo affiliation info availableNo affiliation info available

Pub Type(s)

Journal Article
Research Support, Non-U.S. Gov't

Language

eng

PubMed ID

15326533

Citation

Cai, Yudong, et al. "Carbon-carbon Bond Formation By Radical Addition-fragmentation Reactions of O-alkylated Enols." Organic & Biomolecular Chemistry, vol. 2, no. 17, 2004, pp. 2517-29.
Cai Y, Roberts BP, Tocher DA, et al. Carbon-carbon bond formation by radical addition-fragmentation reactions of O-alkylated enols. Org Biomol Chem. 2004;2(17):2517-29.
Cai, Y., Roberts, B. P., Tocher, D. A., & Barnett, S. A. (2004). Carbon-carbon bond formation by radical addition-fragmentation reactions of O-alkylated enols. Organic & Biomolecular Chemistry, 2(17), 2517-29.
Cai Y, et al. Carbon-carbon Bond Formation By Radical Addition-fragmentation Reactions of O-alkylated Enols. Org Biomol Chem. 2004 Sep 7;2(17):2517-29. PubMed PMID: 15326533.
* Article titles in AMA citation format should be in sentence-case
TY - JOUR T1 - Carbon-carbon bond formation by radical addition-fragmentation reactions of O-alkylated enols. AU - Cai,Yudong, AU - Roberts,Brian P, AU - Tocher,Derek A, AU - Barnett,Sarah A, Y1 - 2004/08/10/ PY - 2004/8/25/pubmed PY - 2005/6/29/medline PY - 2004/8/25/entrez SP - 2517 EP - 29 JF - Organic & biomolecular chemistry JO - Org Biomol Chem VL - 2 IS - 17 N2 - Alpha-tert-butoxystyrene [H2C=C(OBut)Ph] reacts with alpha-bromocarbonyl or alpha-bromosulfonyl compounds [R1R2C(Br)EWG; EWG =-C(O)X or -S(O2)X] to bring about replacement of the bromine atom by the phenacyl group and give R1R2C(EWG)CH2C(O)Ph. These reactions take place in refluxing benzene or cyclohexane with dilauroyl peroxide or azobis(isobutyronitrile) as initiator and proceed by a radical-chain mechanism that involves addition of the relatively electrophilic radical R1R2(EWG)C* to the styrene. This is followed by beta-scission of the derived alpha-tert-butoxybenzylic adduct radical to give But*, which then abstracts bromine from the organic halide to complete the chain. Alpha-1-adamantoxystyrene reacts similarly with R1R2C(Br)EWG, at higher temperature in refluxing octane using di-tert-amyl peroxide as initiator, and gives phenacylation products in generally higher yields than are obtained using alpha-tert-butoxystyrene. Simple iodoalkanes, which afford relatively nucleophilic alkyl radicals, can also be successfully phenacylated using alpha-1-adamantoxystyrene. O-Alkyl O-(tert-butyldimethylsilyl) ketene acetals H2C=C(OR)OTBS, in which R is a secondary or tertiary alkyl group, react in an analogous fashion with organic halides of the type R1R2C(Br)EWG to give the carboxymethylation products R1R2C(EWG)CH2CO2Me, after conversion of the first-formed silyl ester to the corresponding methyl ester. The silyl ketene acetals also undergo radical-chain reactions with electron-poor alkenes to bring about alkylation-carboxymethylation of the latter. For example, phenyl vinyl sulfone reacts with H2C=C(OBut)OTBS to afford ButCH2CH(SO2Ph)CH2CO2Me via an initial silyl ester. In a more complex chain reaction, involving rapid ring opening of the cyclopropyldimethylcarbinyl radical, the ketene acetal H2C=C(OCMe2C3H5-cyclo)OTBS reacts with two molecules of N-methyl- or N-phenyl-maleimide to bring about [3 + 2] annulation of one molecule of the maleimide, and then to link the bicyclic moiety thus formed to the second molecule of the maleimide via an alkylation-carboxymethylation reaction. SN - 1477-0520 UR - https://www.unboundmedicine.com/medline/citation/15326533/Carbon_carbon_bond_formation_by_radical_addition_fragmentation_reactions_of_O_alkylated_enols_ DB - PRIME DP - Unbound Medicine ER -