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Syntheses of heterocyclic compounds via diversity-oriented approach and microwave-assisted solid-phase combinatorial chemistry.

机译:通过多样性导向的方法和微波辅助固相组合化学合成杂环化合物。

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摘要

Diversity-oriented synthesis is a novel subject emerging from genomics and proteomics research in recent years, which aims to synthesize small molecules with structural complexity and diversity for use in a systematic exploration in biology. By coupling with split-pool solid-phase technology, diversity-oriented synthesis offers a powerful means to access structurally complex and diverse small molecules by considering three distinct diversity elements: building blocks, stereochemistry, and skeletons. This thesis research addresses diversity-oriented synthesis of functionalized indole and benzimidazole skeletons starting from readily available and diverse building blocks.; After a brief overview in Chapter 1 on diversity-oriented synthesis and applications to heterocycle synthesis from recent literature, Chapter 2 describes the development of a novel methodology for the synthesis of indoles using commercially available and inexpensive 2-aminophenols. The Pd(0)-Cu(I)-catalyzed Sonogashira cross-coupling reaction of 2-carboxamidoaryl triflates with 1-alkynes, where a remarkable additive effect was observed, afforded 2-alkynylanilides. The latter underwent the base-mediated intramolecular heteroannulation, providing substituted indoles in good overall yields with two points of diversification originated from 2-aminophenols and 1-alkynes. This cross-coupling-heteroannulation approach, in both stepwise and one-pot fashion, was successfully extended to the general synthesis of C4, C5, C6, and C7 nitrogen-substituted indoles, and 4- and 7-azaindoles. These results are documented in Chapter 3.; Solid-phase organic synthesis (SPOS) in combination with encoded split-pool technology provides a powerful means for the preparation of small molecule libraries. In Chapter 4, a 96-member indole library was synthesized using radio-frequency (Rf)-encoded MicroKan reactors based on the developed solution chemistry. The key step to indole ring formation was accomplished by Cu(II)- or Pd(II)-catalyzed heteroannulation of 2-alkynylsulfonamides under controlled microwave irradiation. This synthetic method allows facile introduction of three points of diversity through (i) functional groups in the sulfonamide subunit, (ii) carbon chain length at C2 position, and (iii) substituent at N1 position of indole. A traceless version of the microwave-assisted solid-phase indole library synthesis was established as given in Chapter 5.; The final chapter outlines a new approach to the solid-phase synthesis of a 50-member benzimidazole library from commercially available 4-chloro-3-nitrobenzoic acid. (Abstract shortened by UMI.)
机译:面向多样性的合成是近年来从基因组学和蛋白质组学研究中涌现的一门新兴学科,旨在合成具有结构复杂性和多样性的小分子,用于生物学的系统探索。通过与分离池固相技术结合,面向多样性的合成通过考虑三个不同的多样性元素(构件,立体化学和骨架),提供了一种访问结构复杂且多样的小分子的有力手段。本论文的研究从易于获得和多样化的结构出发,探讨了功能化吲哚和苯并咪唑骨架的面向多样性的合成。在第一章简要介绍了有关多样性导向的合成及其从最新文献中应用于杂环合成后,第二章介绍了使用可商购和廉价的2-氨基苯酚合成吲哚的新方法的发展。 Pd(0)-Cu(I)催化2-羧氨基芳基三氟甲磺酸酯与1-炔烃的Sonogashira交叉偶联反应,其中观察到显着的累加作用,得到2-炔基苯胺。后者进行了碱介导的分子内异环化,以良好的总收率提供了取代的吲哚,并具有源自2-氨基苯酚和1-炔烃的两个多样化点。逐步和一锅方式的这种交叉偶联-异环化方法已成功地扩展到C4,C5,C6和C7氮取代的吲哚以及4-和7-氮杂吲哚的一般合成。这些结果记录在第3章中。固相有机合成(SPOS)与编码的分流池技术相结合,为制备小分子文库提供了强大的手段。在第4章中,根据开发的溶液化学原理,使用射频(Rf)编码的MicroKan反应器合成了96位吲哚文库。吲哚环形成的关键步骤是在受控的微波辐射下,通过Cu(II)-或Pd(II)-催化的2-炔基磺酰胺杂环化反应。该合成方法允许通过(i)磺酰胺亚基中的官能团,(ii)C2位的碳链长度和(iii)吲哚的N1位的取代基容易地引入三个多样性点。如第5章所述,建立了微波辅助固相吲哚库合成的无痕方案。最后一章概述了从市售的4-氯-3-硝基苯甲酸固相合成50位成员苯并咪唑文库的新方法。 (摘要由UMI缩短。)

著录项

  • 作者

    Sun, Li-Ping.;

  • 作者单位

    Hong Kong University of Science and Technology (People's Republic of China).;

  • 授予单位 Hong Kong University of Science and Technology (People's Republic of China).;
  • 学科 Chemistry Organic.
  • 学位 Ph.D.
  • 年度 2004
  • 页码 350 p.
  • 总页数 350
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 有机化学;
  • 关键词

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