首页> 外文期刊>The Journal of Organic Chemistry >An Approach to the 9-Oxo-10-oxabicyclo[5.3.0]dec-2-ene Core of the Guaianolide and Pseudoguaianolide Sesquiterpenes via a Domino Electrocyclic Ring-Opening/Carboxylic Acid Trapping of a gem-Dibromocyclopropane
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An Approach to the 9-Oxo-10-oxabicyclo[5.3.0]dec-2-ene Core of the Guaianolide and Pseudoguaianolide Sesquiterpenes via a Domino Electrocyclic Ring-Opening/Carboxylic Acid Trapping of a gem-Dibromocyclopropane

机译:通过Domino电环开环/羧酸捕获的牙蛋白酰胺和伪胍葡萄质筛的9-氧代-10-oxabidclo [5.3.0] DEC-2-ENE核的方法。

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摘要

A domino silver(I)-promoted electrocyclic 2 pi-cdisrotatory electrocyclic ring-opening/intramolecular nucleophilic trapping of [n.1.0]-dibromocyclopropanes by tethered carboxylic acids results in cyclization to butyrolactones fused to six- and seven-membered carbocycles. In the case of bicyclic [4.3.0] lactones the cis-fused stereoisomer was formed, whereas for the bicyclic [5.3.0] lactones the transfused stereoisomer was formed. Optimal conditions for the reaction used silver(I) trifluoroacetate (2.0 equiv) in trifluoroethanol or with added pyridine (2.0 equiv) and NaPF6 (5.0 equiv). The dibromocyclopropane precursors were made through cyclopropanation with in situ-generated dibromocarbene. The trans-fused lactones are potentially useful building blocks for pseudoguaianolide, guaianolide, and xanthanolide total synthesis. A computational study on the conformational preferences of these systems indicates that the trans-fused bicyclic [5.3.0] butyrolactones are lower in energy than the corresponding cis-fused lactones at the B3LYP/cc-pVTZ level of theory.
机译:Domino银(I) - 通过系环羧酸的[N.1.0] - 二溴环丙烷的多米诺银(I) - 丙键电催化电循环环开/分子内亲核诱捕导致丁内酯环化与六元碳键合的丁内酯。在双环[4.3.0]内酯的情况下,形成顺式融合立体异构体,而对于双环[5.3.0]内酯,形成转染的立体异构体。反应的最佳条件使用银(I)三氟乙酸酯(2.0当量)在三氟乙醇中或加入吡啶(2.0当量)和NaPF6(5.0当量)中。通过与原位产生的二溴化萘的环丙烷制备二溴键环丙烷前体。反式熔融内酯是伪胍,胍基和黄嘌呤醇的潜在有用的结构块。对这些系统的构象偏好的计算研究表明,在B3LYP / CC-PVTZ理论水平的B3LYP / CC-PVTZ水平的相应顺式熔化内酯的能量中,递减双环[5.3.0]抑制剂较低。

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  • 来源
    《The Journal of Organic Chemistry》 |2018年第22期|共12页
  • 作者单位

    Univ Toronto Dept Chem Davenport Res Labs 80 St George St Toronto ON M5S 3H6 Canada;

    Univ Toronto Dept Chem Davenport Res Labs 80 St George St Toronto ON M5S 3H6 Canada;

    Univ Toronto Dept Chem Davenport Res Labs 80 St George St Toronto ON M5S 3H6 Canada;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 有机化学;
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