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Mechanistic study of the thermal decarboxylation and rearrangement of beta-keto-carboxylic acids to form 2,3-dihydrofurans.

机译:β-酮基羧酸热脱羧和重排形成2,3-二氢呋喃的机理研究。

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摘要

1-(cyclopropylcarbonyl)-cyclopropanecarboxylic acid has been shown to undergo thermal decarboxylation to form 5-cyclopropyl-2,3-dihydrofuran. The mechanism for this rearrangement was theorized to involve the opening of the cyclopropane ring to a vinyl group. The open ring would then react with the beta-keto carbonyl during a concerted decarboxylation via a pericyclic ring forming reaction to yield the dihydrofuran product. To test the likelihood of the vinyl intermediate a series of cyclopropane compounds and their vinyl analogs were proposed which would show if the vinyl system would also decarboxylate to the dihydrofuran. The beta-keto acids were formed by the reaction of the dianion of cyclopropane carboxylic acid and various acid chlorides. The vinyl compounds were formed by the reaction of the dianion of crotonic acid and the same acid chlorides as were used in the cyclopropane reaction. All compounds would be sealed in glass ampules under vacuum and heated to 120 °C in order to decarboxylate them. Electron donating and electron withdrawing substituents would be used in order to investigate their impact on the nature of the reaction. The rate of reaction was investigated both by NMR and also by GC analysis. Other potential reaction pathways were also investigated with model compounds being synthesized and ruled out due to their lack of rearrangement to the dihydrofuran compound.
机译:1-(环丙基羰基)-环丙烷羧酸已显示发生热脱羧反应以形成5-环丙基-2,3-二氢呋喃。从理论上讲,这种重排的机理是将环丙烷环打开成乙烯基。然后,在通过环形成环的协同脱羧过程中,开环将与β-酮羰基反应,得到二氢呋喃产物。为了测试乙烯基中间体的可能性,提出了一系列环丙烷化合物及其乙烯基类似物,其将显示乙烯基系统是否也会脱羧成二氢呋喃。 β-酮酸是通过环丙烷甲酸的二价阴离子与各种酰氯的反应形成的。通过巴豆酸的二价阴离子和与环丙烷反应中使用的相同的酰氯的反应形成乙烯基化合物。将所有化合物在真空下密封在玻璃安瓿中,并加热至120°C以使其脱羧。为了研究它们对反应性质的影响,将使用供电子和吸电子的取代基。反应速率通过NMR和GC分析进行研究。还研究了其他潜在的反应途径,并合成了模型化合物,并排除了由于其未重排至二氢呋喃化合物而引起的问题。

著录项

  • 作者

    Bowers, Benjamin.;

  • 作者单位

    University of Massachusetts Lowell.;

  • 授予单位 University of Massachusetts Lowell.;
  • 学科 Chemistry Organic.
  • 学位 Ph.D.
  • 年度 2014
  • 页码 100 p.
  • 总页数 100
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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