Facile Preparation of Allylzinc Species from Allyl Bromides and Unactivated Zinc Induced by a Catalytic Amount of Aluminum Chloride and Their Reactions with Carbonyl Compounds and Acetals
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概要
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The effects of Lewis acids (ZnCl_2,AlCl_3,BF_3,and TiCl_4) on the generation of allylzinc species from allyl bromide and unactivated zinc powder in dry tetrahydrofuran (THF) were examined by trapping the organozinc compound with benzaldehyde, that is, Grignard-type allylation of the aldehyde. Among the Lewis acids employed, AlCl_3,was found to be the promoter of choice. The allylzinc species preformed in the presence of a catalytic amount of AlCl_3 effectively allylated carbonyl compounds. Various aromatic and aliphatic aldehydes as well as ketones were converted into homoallylic alcohols in good to excellent yields. Under the reaction conditions employed, ester, hydroxy, acetal, and aromatic nitro and halide groups were tolerated. In the case of α, β-unsaturated carbonyl compounds, selective 1,2-addition was observed. Substituted allyl bromides such as prenyl, crotyl, cinnamyl, and 2-cyclohexenyl bromides were smoothly converted to the corresponding allylzinc compounds, which reacted with carbonyl compounds to give substituted homoallylic alcohols in excellent yields. The diastereoselectivity in crotylation, cinnamylation, and 2-cyclohexenylation depended upon the structures of both the organic metals and the electrophiles. The origin of the observed selectivity is discussed. The allylation of dimethyl and cyclic acetals accompanied with carbon-oxygen bond cleavege also proceeded in excellent yields provided that two equivalents of AlCl_3 was present.
- 社団法人日本薬学会の論文
- 1994-09-15
著者
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大森 秀信
Faculty of Pharmaceutical Sciences, Osaka University
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大森 秀信
Faculty Of Pharmaceutical Sciences Osaka University
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大森 秀信
大阪大学大学院薬学研究科分子反応解析学分野
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前田 初男
阪大薬
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前田 初男
大阪大学薬学部
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前田 初男
Faculty of Pharmaceutical Sciences, Osaka University
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正野 和重
Faculty of Pharmaceutical Sciences, Osaka University
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前田 初男
Faculty Of Pharmaceutical Sciences Osaka University
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正野 和重
Faculty Of Pharmaceutical Sciences Osaka University
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