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Rhodium-catalyzed asymmetric amination of trichloroacetimidates with application to nitrogen heterocycle synthesis.

机译:铑催化的三氯乙亚氨酸盐的不对称胺化及其在氮杂环合成中的应用。

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摘要

Chiral quaternary centers possessing a bond to nitrogen are an important class of amine compounds, however, methods for their enantioselective preparation remain sparse. The focus of my graduate research described herein has been the development of a novel rhodium-catalyzed regio- and enantioselective allylic aryl amination of tertiary trichloroacetimidates for the synthesis of amine-bearing quaternary centers (also termed alpha,alpha-disubstituted amines). Prior to our work, allylic carbonates and acetates had been successfully utilized in transition-metal catalyzed substitution reactions with anilines for the asymmetric synthesis of tertiary centers. In contrast, these electrophiles have not proven useful in dynamic kinetic asymmetric transformations (DYKAT) that yield enantioenriched amine products, and no reports describing the asymmetric preparation of alpha,alpha-disubstituted allylic aryl amines via allylic substitution are noted.;Many of the ideas for development of our rhodium-catalyzed amination method were based upon the findings of Overman where linear allylic trichloroacetimidates are utilized in [3,3]-sigmatropic rearrangements and substitution reactions by oxygen nucleophiles under palladium (II) catalysis. Our method diverges from this previous work by application of branched allylic trichloroacetimidates where the olefin component is mono-substituted, and the use of a transition-metal complex capable of facile oxidative addition to an intermediate organometallic complex. We hypothesized that bidentate chelation of these substrates at the imidate nitrogen and the relatively unimpeded olefin by a rhodium (I) complex would lead to rapid ionization to an activated complex and competent electrophile for substitution by neutral aniline nucleophiles. This premise was supported by many control studies and resulted in the development of a highly regioselective amination of branched allylic trichloroacetimidates for the operationally simple synthesis of alpha-substituted and alpha,alpha-disubstituted allylic aryl amines. Work followed utilizing chiral diene ligands that rendered the reaction enantioselective for preparation of enantioenriched tertiary and quaternary amine-containing centers. A highlight of these studies is the first example of DYKAT using a tertiary electrophile and an aryl amine nucleophile. The reaction is of broad substrate scope, is tolerant of varied functionality and substitution patterns on the nucleophilic partner, and solves regioselectivity issues often encountered with some substrate and aniline classes. I end by showing the synthetic utility of our rhodium-catalyzed reaction by applying this method to the synthesis of enantioenriched amino acids and construction of 7-membered nitrogen-containing heterocycles by a 2-step DYKAT amination and olefin hydroacylation sequence.
机译:具有氮键的手性季中心是一类重要的胺化合物,然而,其对映选择性制备的方法仍然很少。本文所述的我的研究生研究的重点是开发新型的铑催化的对位三氯乙酰亚氨酸叔胺的对位和对映选择性烯丙基芳基胺化反应,用于合成含胺的季胺中心(也称为α,α-二取代的胺)。在我们的工作之前,烯丙基碳酸盐和乙酸盐已成功用于过渡金属催化的苯胺取代反应,用于叔中心的不对称合成。相反,尚未证明这些亲电试剂可用于产生对映体富集的胺产物的动态动力学不对称转化(DYKAT),并且未见报道描述通过烯丙基取代来不对称制备α,α-二取代烯丙基芳基胺的报道。铑催化胺化方法的开发是基于Overman的发现,在钯(II)催化下,线性烯丙基三氯乙亚氨酸盐被用于[3,3]-σ重排和氧亲核试剂的取代反应。我们的方法通过应用支化的烯丙基三氯乙酰亚胺酸酯(其中烯烃组分被单取代)和使用能够容易地氧化成中间体有机金属配合物的过渡金属配合物而不同于先前的工作。我们假设铑(I)络合物在亚氨酸氮和相对不受阻的烯烃上对这些底物进行双齿螯合会导致快速离子化为活化的络合物和能被中性苯胺亲核试剂取代的亲电试剂。这一前提得到了许多对照研究的支持,并导致了支链烯丙基三氯乙亚氨酸酯的高度区域选择性胺化的发展,用于操作上简单地合成α-取代的和α,α-二取代的烯丙基芳基胺。随后进行了利用手性二烯配体的工作,该手性二烯配体使反应对映选择性,以制备富含对映体的叔胺和季胺中心。这些研究的重点是使用叔亲电试剂和芳基胺亲核试剂的DYKAT的第一个实例。该反应具有广泛的底物范围,可以耐受亲核伴侣上的各种功能和取代模式,并解决了某些底物和苯胺类经常遇到的区域选择性问题。最后,我们通过将这种方法应用于对映体富集的氨基酸的合成以及通过两步DYKAT胺化和烯烃加氢酰化序列构建7元含氮杂环的方法,展示了铑催化反应的合成效用。

著录项

  • 作者

    Arnold, Jeffrey Scott.;

  • 作者单位

    The University of Iowa.;

  • 授予单位 The University of Iowa.;
  • 学科 Chemistry Organic.
  • 学位 Ph.D.
  • 年度 2014
  • 页码 830 p.
  • 总页数 830
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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