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Novel Mixed Organoboranes for the Reductive Alkylation of p-Benzoquinone.

机译:用于对苯醌还原烷基化的新型混合有机硼烷。

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摘要

In the early 1960's, Hawthorne discovered the quantitative synthesis of alkylhydroquinones by reacting 1,4-benzoquinone with trialkylboranes formed from hydroboration. Later work revealed limitations to the reductive alkylation of benzoquinones due to the poor regioselectivity of the hydroboration and the migratory aptitudes of the alkyl groups, namely transferring the more substituted group impacting product purity. During this process, only one alkyl substituent transfers while the others are lost, thus resulting in formation of a borinic ester that is difficult to remove, air-sensitive, radical generating, and ultimately degrades product purity. Mixed organoboranes can overcome these difficulties using auxiliary groups with relatively low migratory aptitudes, such as phenyl groups or methyl groups.;Our group has developed the first general preparation of alkyldiphenylboranes. They readily react with p-benzoquinone successfully demonstrating the applicability of using mixed organoboranes. In this study, we are investigating using methyl groups as our auxiliary. Our initial studies used Matteson's hydroboration procedure using triethylsilane and trichloroborane to form the unsolvated dichloroborane, HBCl2, a highly regioselective reagent for a variety of olefins and avoids limitations of ligand complexed boranes. Once the alkyldichloroboranes were synthesized, they were methylated using the Grignard reagent or dimethylzirconocene. The reaction conditions were somewhat dependant on the alkyl group. The purity of the alkyldimethylborane was analyzed by boron NMR after complexation to a ligand. Addition of the alkyldimethylboranes to p-benzoquinone quickly resulted in ca. 90% isolated yields of the alkylhydroquinone. The resulting dimethylborinic acid is easily removed preventing any radical side reactions. Overall, we have developed a general route for the reductive alkylation of quinones, with good selectivity and in high yields, demonstrating the applicability of methyl auxiliary groups. As such, attempts were made to synthesize vinyldimethylboranes using the developed synthetic routes.
机译:在1960年代初期,霍桑通过1,4-苯醌与氢硼化反应生成的三烷基硼烷的反应发现了烷基氢醌的定量合成方法。后来的工作表明,由于硼氢化反应的区域选择性差和烷基的迁移能力,即转移更多取代基团影响产品纯度,苯醌的还原烷基化受到限制。在此过程中,只有一个烷基取代基转移,而另一个则丢失,因此导致形成硼酸酯,该硼酸酯难以除去,对空气敏感,会产生自由基,并最终降低产品纯度。混合的有机硼烷可以使用迁移能力相对较低的辅助基团(例如苯基或甲基)克服这些困难。我们的小组开发了第一种烷基二苯基硼烷的通用制剂。它们容易与对苯醌反应,成功证明了使用混合有机硼烷的适用性。在这项研究中,我们正在研究使用甲基作为辅助剂。我们的初步研究使用了Matteson的加氢硼化工艺,该工艺使用三乙基硅烷和三氯硼烷来形成未溶剂化的二氯硼烷HBCl2,这是一种对多种烯烃具有高度区域选择性的试剂,并且避免了配体络合的硼烷的局限性。一旦烷基二氯硼烷被合成,就使用格氏试剂或二甲基锆茂将它们甲基化。反应条件在某种程度上取决于烷基。络合至配体后,通过硼NMR分析烷基二甲基硼烷的纯度。将烷基二甲基硼烷加到对苯醌中很快导致约。烷基氢醌的分离产率为90%。容易除去生成的二甲基硼酸,防止任何自由基副反应。总体而言,我们已经开发出了一种具有良好选择性和高收率的醌类还原烷基化的通用路线,证明了甲基辅助基团的适用性。因此,尝试使用开发的合成路线合成乙烯基二甲基硼烷。

著录项

  • 作者

    Hincapie, Gloria.;

  • 作者单位

    University of California, San Diego.;

  • 授予单位 University of California, San Diego.;
  • 学科 Chemistry Organic.;Engineering Chemical.;Chemistry Physical.
  • 学位 Ph.D.
  • 年度 2011
  • 页码 263 p.
  • 总页数 263
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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