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Palladium-catalyzed reactions and their application to the total synthesis of plakortone B and analogs.

机译:钯催化的反应及其在Plakortone B及其类似物的全合成中的应用。

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摘要

The palladium-catalyzed alkoxycarbonylation reaction is an important reaction in organic synthesis for the selective formation of oxygen-containing heterocycles. The mechanism of this reaction has recently been questioned, and so a conformation of this mechanism has been achieved by the use of X-ray diffraction analysis of a derivative of the major tetrahydropyran product. In order to increase the scope of the reaction, especially with respect to the formation of tetrahydrofurans, a survey of ligand effects on the selectivity of these reactions has been performed. It has been shown that modest diastereoselectivities can be achieved for the formation of tetrahydrofurans when the cyclizations are performed in the presence of (-)-sparteine and also in the absence of chloride ion.; The scope of the palladium-catalyzed hydrostannylation of alkynes has also been extended to include reaction of highly hindered substrates by the use of hexane as solvent to minimize competitive dimerization of tributyltin hydride. Regioselective hydrostannylation can be achieved by using the directing effect of oxygen-containing groups (either ethers or esters) in the propargylic position.; The two palladium-catalyzed reactions described above have been utilized in an asymmetric total synthesis of the natural furanolactone Plakortone B, along with three other related compounds. The plakortone family has shown an ability to activate Ca2+ uptake via the sarcoplasmic reticulum Ca2+ ATPase, a process linked to heart regulation. These convergent syntheses show the efficacy of the palladium-catalyzed alkoxycarbonylation reaction, and constitute the most complex cases performed to date, with as many as three competing olefins present in the structure. Also, the synthetic pathway allowed for a number of analogs of the plakortones to be created rapidly from a common intermediate.
机译:钯催化的烷氧羰基化反应是有机合成中用于选择性形成含氧杂环的重要反应。最近已经对该反应的机理提出了质疑,因此已经通过使用主要四氢吡喃产物的衍生物的X射线衍射分析获得了该机理的构象。为了增加反应的范围,特别是关于四氢呋喃的形成,已经进行了配体对这些反应的选择性的影响的调查。已经表明,当在(-)-天冬氨酸存在下并且在不存在氯离子的情况下进行环化反应时,对于四氢呋喃的形成可以达到适度的非对映选择性。炔烃的钯催化加氢锡烷基化的范围也已扩大到包括通过使用己烷作为溶剂使受阻三丁基锡的竞争性二聚作用最小化的高度受阻底物的反应。可以通过在炔丙基位置上使用含氧基团(醚或酯)的指导作用来实现区域选择性加氢苯乙烯基化。上述两种钯催化的反应已与天然呋喃内酯Plakortone B以及其他三种相关化合物一起用于不对称全合成中。 Plakortone家族已显示出通过肌浆网Ca2 + ATPase激活Ca2 +摄取的能力,该过程与心脏调节有关。这些聚合合成显示出钯催化的烷氧羰基化反应的功效,并且构成了迄今为止进行的最复杂的情​​况,在结构中存在多达三种竞争性烯烃。而且,合成途径允许从共同的中间体快速产生普拉克酮的许多类似物。

著录项

  • 作者

    Hooley, Richard J.;

  • 作者单位

    Princeton University.;

  • 授予单位 Princeton University.;
  • 学科 Chemistry Organic.
  • 学位 Ph.D.
  • 年度 2004
  • 页码 307 p.
  • 总页数 307
  • 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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