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Chemical fixation of carbon dioxide and other heterocumulenes: The development of catalysts for the reaction of epoxides and carbon dioxide/heterocumulenes .

机译:二氧化碳和其他杂聚枯烯的化学固定:环氧化物和二氧化碳/杂聚枯烯的反应催化剂的开发。

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摘要

CrIII(salen) complexes were found to be excellent catalysts for the coupling of terminal epoxides with CO2 when used in conjunction with a Lewis base co-catalyst (DMAP). We optimized the catalyst systems activity by modifying the structure of the catalyst and co-catalyst as well as tuning other reaction parameters. This lead to the development of a catalyst system which cleanly affords the product cyclic carbonates in high yield under mild reaction conditions and is applicable to a variety of terminal epoxides.;CoIII(porphyrin) and CoIII(salen) complexes were also demonstrated to be efficient catalysts for the coupling of CO 2 and epoxides. As was the case for the CrIII(salen) complex, these Lewis acids also required the presence of a Lewis base co-catalyst. These CoIII complexes were found to be highly active catalysts for the synthesis of the cyclic carbonate products from a variety of terminal mono- and disubstituted epoxides affording high yield and selectivity. 1,2-Disubstituted internal epoxides were also investigated as substrates and found to react with very high stereospecificity. A chiral CoIII(salen) complex was found to be more selective than the analogous chiral CrIII(salen) complex in the kinetic resolution of propylene oxide with CO2. We discovered that the enantioselectivity could be further improved with modifications of the sterics and electronics of the co-catalysts, attaining a maximum selectivity factor of 5.6.;We also investigated the extension of our CrIII(salen)/Lewis base catalyst system to the coupling of epoxides with isocyanates. In contrast to the coupling reaction of CO2 and epoxides, the optimal catalyst system for this transformation required a weak Lewis base. Under optimal reaction parameters, this catalyst system was active for the production of a variety of 5-substituted oxazolidinones in high yield and selectivity. In addition, this catalyst system was shown to catalyze the transformation of chiral epoxides to chiral oxazolidinones with no loss in chirality.
机译:当与路易斯碱助催化剂(DMAP)结合使用时,发现CrIII(salen)配合物是将末端环氧化物与CO2偶联的优异催化剂。我们通过修改催化剂和助催化剂的结构以及调整其他反应参数来优化催化剂体系的活性。这导致了催化剂体系的发展,该催化剂体系在温和的反应条件下可高收率地干净地高收率地提供产物环状碳酸酯,并适用于各种末端环氧化物.CoIII(卟啉)和CoIII(salen)配合物也被证明是有效的用于CO 2和环氧化物偶联的催化剂。与CrIII(salen)络合物一样,这些路易斯酸还需要存在路易斯碱助催化剂。发现这些CoIII配合物是用于由多种具有高产率和选择性的末端单-和双取代的环氧化物合成环状碳酸酯产物的高活性催化剂。还研究了1,2-二取代的内部环氧化物作为底物,发现它们具有很高的立体特异性。发现手性CoIII(salen)络合物在环氧丙烷与CO2的动力学拆分中比类似的手性CrIII(salen)络合物更具选择性。我们发现,通过改变助催化剂的空间和电子性质,可以进一步提高对映选择性,最大选择性系数为5.6。我们还研究了CrIII(salen)/ Lewis碱催化剂体系对偶联的扩展。与异氰酸酯的环氧化物。与CO2和环氧化物的偶联反应相反,此转化的最佳催化剂体系需要弱的Lewis碱。在最佳反应参数下,该催化剂体系对于以高产率和选择性生产各种5-取代的恶唑烷酮具有活性。另外,该催化剂体系显示出催化手性环氧化物向手性恶唑烷酮的转化,而手性没有损失。

著录项

  • 作者

    Paddock, Robert Lewis.;

  • 作者单位

    Northwestern University.;

  • 授予单位 Northwestern University.;
  • 学科 Chemistry Inorganic.;Chemistry Organic.
  • 学位 Ph.D.
  • 年度 2004
  • 页码 127 p.
  • 总页数 127
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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