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A modular synthesis of ketones and gem-diborylalkanes by catalytic carbon insertion with non-stabilized diazoalkanes.

机译:通过催化碳与非稳定重氮烷的合成,合成酮和双二硼烷基烷烃。

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摘要

Chapter 1. The reaction of diazomethane with simple aldehydes to deliver methyl ketones has a long studied history in the art of organic synthesis. Formyl electrophiles have also been homologated with trimethylsilyldiazomethane, diazoacetates, and aryl-diazomethanes that very rarely proceed with catalytic activation. Due to the stigma of handling non-stabilized diazoalkanes this history is limited to examples utilizing alpha-diazoesters and entirely missing are examples of tertiary alpha-substituted ketone synthesis beginning with disubstituted (internal) diazoalkanes. This work describes a general catalytic procedure for convergent ketone production using non-stabilized, mono- and disubstituted diazomethanes. The method involves mild reaction conditions, produces molecular nitrogen as the only byproduct, and includes six examples of chiral ketone synthesis from various aryl, heteroaryl, or aliphatic aldehydes. The latter feature, together with new evidence that the catalytic reaction mechanism invokes a stereospecific, intramolecular C--H migration, sets the stage for an enantioselective synthesis of acyclic ketones by asymmetric carbon insertion. The remarkable tolerance of this transformation to steric crowding in either reaction partner is showcased in a simple, five-step construction of the complete carbon framework in achyrofuran, a complex dibenzofuranoid.*;Chapter 2. Paraformaldehyde is an inexpensive and readily available source of carbon (∼30 USD/kg). Upon heating, the polymer thermally depolymerizes to yield gaseous formaldehyde that can be bubbled through reactions or stored in solution at low temperature. In this work, a new and general strategy for complex ketone synthesis is described based on Sc-catalyzed, double diazoalkyl C--H insertion reactions with formaldehyde as a 1-C source. The method forms di-, tri-, and even tetrasubstituted acetones efficiently, and it has streamlined a synthesis of the Erythroxylon alkaloid (-)-dihydrocuscohygrine in which absolute stereochemistry in a proline-based starting material is preserved.*;Chapter 3. Use of geminally-substituted diorganometallics often gives new forms of reactivity that are unavailable to their monosubstituted counterparts. With the expanding use of boronic acids in many areas of synthetic organic methodology, an underappreciated research area has been full development of disubstitited gem-diboronic ester derivatives for use in tandem reactions, olefination methods, metal catalyzed coupling reactions, and transmetallations to mixed gem-diorganometallics. The nature of molecular boron is routinely engaged through its Lewis acidic vacant p-orbital, and, after metalation, this orbital interaction is enlisted to stabilize alpha-carbanion or alpha-carbanion like species to allow dependable reactivity in various applications. The platinum-catalyzed geminal diboration of diazoalkanes provides reliable and efficient access to a full range of disubstitited gem-diboronic esters enabling the exploration of novel methodologies.*;*Please refer to dissertation for diagrams.
机译:第1章。重氮甲烷与简单醛反应生成甲基酮的反应在有机合成领域已有很长的研究历史。甲酰基亲电试剂也已与很少进行催化活化的三甲基甲硅烷基重氮甲烷,重氮乙酸酯和芳基重氮甲烷进行了同源化。由于处理不稳定的重氮烷烃的污名化,该历史仅限于使用α-重氮酯的实例,而完全缺少以二取代的(内部)重氮烷烃开始的叔α-取代的酮合成的实例。这项工作描述了使用不稳定的,单取代和双取代的重氮甲烷生产聚酮的一般催化程序。该方法涉及温和的反应条件,产生分子氮作为唯一的副产物,并且包括由各种芳基,杂芳基或脂族醛合成手性酮的六个实例。后者的特征以及催化反应机制引起立体特异性分子内CH迁移的新证据,为通过不对称碳插入进行对映选择性合成无环酮奠定了基础。通过在复杂的二苯并呋喃类化合物呋喃呋喃中完整碳骨架的简单,五步构建,证明了这种转化对任一反应伙伴中空间拥挤的显着耐受性。*;第2章。多聚甲醛是一种廉价且易于获得的碳源(〜30美元/千克)。加热后,聚合物热解聚,生成气态甲醛,可通过反应鼓泡或在低温下储存在溶液中。在这项工作中,基于甲醛作为1-C来源的Sc催化双重氮烷基CH插入反应描述了一种复杂的酮合成新的通用策略。该方法有效地形成了二,三甚至四取代的丙酮,并且简化了Erythroxylon生物碱(-)-dihydrocuscohygrine的合成,其中脯氨酸基原料中的绝对立体化学得以保留。*;第3章。使用双取代的二有机金属化合物通常能提供新的反应形式,而单取代的对等物则无法获得。随着硼酸在合成有机方法的许多领域中的广泛使用,人们对未被充分利用的宝石-二硼酸酯衍生物进行串联反应,烯化方法,金属催化的偶联反应以及混合金属-二有机金属。分子硼的性质通常通过其Lewis酸性空位p轨道进行,并且在金属化后,该轨道相互作用被要求稳定化α-碳环或类似α-碳环的物种,以在各种应用中提供可靠的反应性。铂催化的重氮烷烃的双缩硼烷基化提供了可靠且有效的途径,可用于获得范围广泛的未取代的双二硼酸酯,从而可以探索新的方法。

著录项

  • 作者

    Wommack, Andrew Joseph.;

  • 作者单位

    Boston College.;

  • 授予单位 Boston College.;
  • 学科 Chemistry Organic.
  • 学位 Ph.D.
  • 年度 2011
  • 页码 379 p.
  • 总页数 379
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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