에스테르엔올 음이온의 Claisen 자리옮김 반응에 의한 Permethrin의 합성

Synthesis of Permethrin using Ester Enolate Claisen Rearrangement

  • 김인규 (성균관대학교 이과대학 화학과) ;
  • 강석구 (성균관대학교 이과대학 화학과) ;
  • 홍장후 (경기공업개방대학 화학공학과)
  • In-Kyu Kim (Department of Chemistry, Sung Kyun Kwan University) ;
  • Suk-Ku Kang (Department of Chemistry, Sung Kyun Kwan University) ;
  • Jang-Hoo Hong (Department of Chemical Engineering, National Kyonggi Open University)
  • 발행 : 1986.12.20

초록

(${\pm}$)시스- 및 트란스-3-(2,2-디클로로비닐)-2,2-디메틸-1-시클로프로판 카르복시산 3-페녹시벤질을 2-메틸-3-부텐-2올($\underline{2}$)을 출발물질로하여 입체선택적으로 합성하였다. 아세트산과 무수아세트산의 존재하에서 2-메틸-3-부텐-2-올을 알릴자리옮김 반응에 의해 아세트산3-메틸-2-부텐-일($\underline{3}$)을 얻은 다음 이 아세트산 알릴($\underline{3}$)의 [3,3] 시그마 자리옮김 반응에 의해 ${\gamma},\;{\delta}$-불포화산($\underline{4}$)을 얻었다. 3,3-디메틸-4-펜텐산($\underline{4}$)을 SOCl$_2$로 처리하고 3-페녹시벤질알코올로 에스테르화 시켜 알코올 부분이 구축된 3,3-디메틸-4-펜텐산 3-페녹시벤질($\underline{6}$)을 얻어서 사염화탄소의 첨가 후 그리화에 의해 (+)시스-및 트란스-3-(2,2-디클로로비닐)-2,2-디메틸-1-시클로프로 판카르복시산 3-페녹시벤질을 합성하였다

A stereoselective synthesis of 3-phenoxybenzyl (${\pm}$)-cis and trans-3-(2,2-dichlorovinyl)-2,2-dimethyl-1-cyclopropanecarboxylic acid starting from readily available 2-methyl-3-buten-2-ol($\underline{2}$) is described. Allylic rearrangement of 2-methyl-3-buten-2-ol, in the presence of acetic acid and acetic anhydride gave 3-methyl-2-butenyl acetate($\underline{3}$). The [3,3] sigmatropic rearrangement of the allyl acetate($\underline{3}$), as the silylketene acetal, produced the ${\gamma},\;{\delta}$-unsaturated acid($\underline{4}$). Treatment of 3,3-dimethyl-4-pentenoic acid($\underline{4}$) with SOCl2 followed by esterification with 3-phenoxybenzyl alcohol yielded 3, 3-dimethyl-4-pentenoic acid ester($\underline{5}$). Addition of carbon tetrachloride to the olefin ester($\underline{6}$) furnished 4,6,6,6-tetrachloro-3,3-dimethylhexanoic acid ester ($\underline{7}$). Cyclization with potassium t-butoxide and elimination of hydrogen chloride afforded 3-phenoxybenzyl (${\pm}$) cis- and trans-3-(2,2-dichlorovinyl)-2,2-dimethyl-1-cyclopropanecarboxylic acid.

키워드

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