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Catalytic strategies for asymmetric nucleophilic fluorination using a latent hydrogen fluoride source: Development and mechanistic investigations.

机译:使用潜在的氟化氢源进行不对称亲核氟化的催化策略:发展和机理研究。

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摘要

Fluorinated organic molecules display broad utility as pharmaceuticals, radiotracers, performance materials, and agrochemicals. In particular, the development of new synthetic methods for C–F bond formation furthers the discovery of bioactive small molecules and PET tracers necessary to study, diagnose, and treat human disease. While catalytic asymmetric methods using electrophilic "F+" equivalents have been identified, complementary strategies for enantioselective C–F bond formation using abundant, inexpensive nucleophilic fluoride sources are scarce.;We have developed catalytic methods for the synthesis of β-fluoroamines and alcohols using benzoyl fluoride as a soluble, latent source of fluoride anion. The combination of benzoyl fluoride and an alcohol generates HF in situ, allowing catalyst-controlled C–F bond formation. Under Lewis base catalysis, an amine–HF reagent is generated that shows excellent reactivity and broad substrate scope in aziridine hydrofluorination. The use of a chiral auxiliary enables the practical asymmetric synthesis of enantioenriched fluoroamines.;This latent HF source has also been applied to the asymmetric catalytic ring opening of epoxides to provide β-fluoroalcohols. Both the desymmetrization of meso epoxides and the kinetic resolution of terminal epoxides were achieved under mild conditions. A dual-catalyst system, consisting of a chiral Lewis acid and an amine, was found to be optimal; cooperative effects between the cocatalysts were observed. Detailed mechanistic studies have shed light on the origin of cooperativity and enabled synthetic improvements. Additionally, these studies revealed that the active nucleophilic species is a chiral transition-metal fluoride formed from the Lewis acid catalyst and the latent HF source. To demonstrate the utility of this nucleophilic fluoride source in other asymmetric transformations, we developed an enantioselective heterobimetallic fluoride ring opening of aziridines.
机译:氟化有机分子具有广泛的用途,可作为药物,放射性示踪剂,功能材料和农用化学品。尤其是,新的形成C-F键的合成方法的开发进一步促进了对研究,诊断和治疗人类疾病必不可少的生物活性小分子和PET示踪剂的发现。虽然已经确定了使用亲电子“ F + ”等价物的催化不对称方法,但缺乏使用大量廉价的亲核氟化物来源形成对映选择性CF键的互补策略。苯甲酰氟作为可溶性,潜在的氟化物阴离子来源的β-氟胺和醇的合成苯甲酰氟和一种醇的结合会在原位产生HF,从而使催化剂控制的CF键形成。在路易斯碱催化下,会生成一种胺-HF试剂,该试剂在氮丙啶氢氟化反应中显示出出色的反应性和广泛的底物范围。手性助剂的使用可以实现对映体富集的氟胺的实际不对称合成。该潜在的HF源也已用于环氧化物的不对称催化开环,以提供β-氟代醇。在温和条件下均实现了中环氧化物的脱对称化和末端环氧化物的动力学拆分。发现由手性路易斯酸和胺组成的双催化剂体系是最佳的。观察到助催化剂之间的协同作用。详细的机械研究揭示了合作性的起源并实现了综合改进。另外,这些研究表明,活性亲核物质是由路易斯酸催化剂和潜在的HF源形成的手性过渡金属氟化物。为了证明该亲核氟化物源在其他不对称转化中的用途,我们开发了氮丙啶的对映选择性杂双金属氟化物开环。

著录项

  • 作者

    Kalow, Julia Ann.;

  • 作者单位

    Princeton University.;

  • 授予单位 Princeton University.;
  • 学科 Chemistry Molecular.;Chemistry Organic.
  • 学位 Ph.D.
  • 年度 2013
  • 页码 287 p.
  • 总页数 287
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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