首页> 外文学位 >Part A: Benzyl Functionalization Through Cu(I)-catalyzed Divergent Reactivity of Styrenes Part B: Synthesis of Aminated Stereotriads Through Regio- and Stereocontrolled Allene Oxidation.
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Part A: Benzyl Functionalization Through Cu(I)-catalyzed Divergent Reactivity of Styrenes Part B: Synthesis of Aminated Stereotriads Through Regio- and Stereocontrolled Allene Oxidation.

机译:A部分:通过Cu(I)催化的苯乙烯发散反应性进行苄基官能化B部分:通过区域和立体控制的丙二烯氧化反应合成胺化的立体异构体。

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摘要

Many bioactive molecules include arenes that possess benzylic functionalization. An approach to introduce benzyl functionality could involve benzyl nucleophiles or electrophiles, but these can be difficult to prepare. We developed a strategy to render either species from styrenes using Cu(I)-catalyzed hydroboration. Treatment of benzyl boronic esters with potassium-tert-butoxide generated benzyl nucleophiles suitable for reactivity with heteroallene electrophiles through combination of sterically-driven bond cleavage and formation of a strong B-O bond. The mild conditions tolerated carbanion-sensitive functional groups, and were accomplished in the same pot as hydroboration. Benzyl electrophiles were prepared through an unusual Cu(I)-catalyzed hydroboration of ortho-halostyrenes. We identified a catalyst that borylated the Ar-X bond with 1,3-migration of the halide to the benzylic position. The benzyl halide electrophile reacted with a variety of nucleophiles to form additional carbon-heteroatom bonds. The system is an example of activating group recycling, where the halide directs arene borylation, but is reincorporated into the product for further functionalization. Preliminary mechanism investigations point to an unusual 1,3-metal migration that allows intramolecular halide transposition. Part B:;Construction of densely functionalized amines is an important, yet challenging task, particularly when three or more adjacent heteroatom-containing stereocenters are present. These motifs possess diverse combinations of heteroatoms and stereochemical configurations that make efficient and flexible synthetic methods scarce. We have used allenes to assemble aminated stereotriads with excellent regio- and stereocontrol. A Rh(II)-catalyzed oxidation of allenyl carbamates and sulfamates produced bicyclic methylene aziridines, which are well-poised for elaboration to aminated stereotriads through nucleophilic ring opening and double bond functionalization. All three allene carbon atoms become heteroatom-bearing stereocenters. Flexible choice of nucleophiles and electrophiles allow multiple combinations of heteroatoms to be installed. We developed an approach to access any of the possible stereochemical configurations of 2-amino-1,3-diols from the same allene precursor. Both reagent and substrate control can be employed towards the stereodivergent oxidative amination of allenes. The methodology was demonstrated in the synthesis of all diastereomers of the amino acid detoxinine. The results highlight the potential for allene oxidation to rapidly assemble challenging, and densely functionalized amine-containing motifs in biologically relevant targets.
机译:许多生物活性分子包括具有苄基官能化作用的芳烃。引入苄基官能团的方法可能涉及苄基亲核试剂或亲电试剂,但是这些可能很难制备。我们开发了一种策略,可以使用Cu(I)催化的硼氢化从苯乙烯中分离出任何一种。用叔丁醇钾处理苄基硼酸酯生成的苄基亲核试剂,通过结合空间驱动键裂解和形成强B-O键,可与杂亚戊烯亲电子试剂反应。温和的条件耐受碳负离子敏感的官能团,并且在与硼氢化反应相同的条件下完成。通过不寻常的Cu(I)催化邻卤代苯乙烯的硼氢化反应制备了亲电体。我们确定了一种催化剂,该催化剂使Ar-X键与卤化物的1,3-迁移到苄基位置上形成硼酸酯。卤化苄基亲电子试剂与多种亲核试剂反应形成额外的碳-杂原子键。该系统是活化基团回收的一个例子,其中卤化物指导芳烃的硼化反应,但将其重新掺入产品中以进一步官能化。初步的机理研究表明,异常的1,3-金属迁移使分子内卤化物易位。 B部分:稠密官能化胺的构建是一项重要而又具有挑战性的任务,特别是当存在三个或更多相邻的含杂原子的立体中心时。这些基序具有杂原子和立体化学构型的各种组合,这些组合使得缺乏有效而灵活的合成方法。我们已使用异戊烯组装具有出色的区域和立体控制能力的胺化立体三单元组。 Rh(II)催化的烯丙基氨基甲酸酯和氨基磺酸酯氧化生成双环亚甲基氮丙啶,它们准备通过亲核开环和双键官能化加工成胺化的立体三单元。所有三个亚丙基碳原子均成为带有杂原子的立体中心。亲核试剂和亲电试剂的灵活选择允许安装杂原子的多种组合。我们开发了一种方法,可以从相同的异戊二烯前体中获得2-氨基-1,3-二醇的任何可能的立体化学构型。试剂和底物控制都可以用于丙二烯的立体发散性氧化胺化。该方法已在氨基酸脱毒素的所有非对映异构体的合成中得到证明。结果表明,在生物相关靶标中,丙二烯氧化可能会迅速组装具有挑战性且功能密集的含胺基序。

著录项

  • 作者

    Grigg, Robert David.;

  • 作者单位

    The University of Wisconsin - Madison.;

  • 授予单位 The University of Wisconsin - Madison.;
  • 学科 Chemistry Organic.;Chemistry General.;Chemistry Molecular.
  • 学位 Ph.D.
  • 年度 2014
  • 页码 610 p.
  • 总页数 610
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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