首页> 外文期刊>The Journal of Organic Chemistry >Cycloaddition Reaction of Vinylphenylfurans and Dimethyl Acetylenedicarboxylate to [8+2] Isomers via Tandem [4+2]/Diradical Alkene-Alkene Coupling/[1,3]-H Shift Reactions: Experimental Exploration and DFT Understanding of Reaction Mechanisms
【24h】

Cycloaddition Reaction of Vinylphenylfurans and Dimethyl Acetylenedicarboxylate to [8+2] Isomers via Tandem [4+2]/Diradical Alkene-Alkene Coupling/[1,3]-H Shift Reactions: Experimental Exploration and DFT Understanding of Reaction Mechanisms

机译:乙烯基苯呋喃和乙炔二甲酸二甲酯经由串联[4 + 2] /双自由基烯烃-烯烃偶联/ [1,3] -H变换反应的环加成反应为[8 + 2]异构体:实验探索和对反应机理的DFT理解

获取原文
获取原文并翻译 | 示例
           

摘要

An experimental test of designed [8 + 2] reaction of vinylphenylfuran and dimethyl acetylenedicarboxylate (DMAD) has been carried out, showing that the reaction gave unexpected addition products under different conditions. When the reaction was conducted under thermal conditions in toluene, expoxyphenanthrene, which was named as a [8 + 2] isomer, was generated. The scope of this reaction has been investigated in the present study. In addition, experiments and DFT calculations have been conducted to investigate how the reaction between vinylphenylfuran and DMAD took place. Surprisingly, the reaction did not involve the expected [8 + 2] intermediate, o-quinodimethane. Instead, the reaction starts from intermolecular Diels-Alder reactions between DMAD and the furan moiety of vinylphenylfuran, followed by unexpected intramolecular alkene-alkene coupling. This step generates a diradical species, which then undergoes [1,3]-H shift to give the experimentally observed expoxyphenanthrene. DFT calculations revealed that, the [8 + 2] cycloadduct cannot be obtained because the [1,5]-H shift process from the [1,5]-vinyl shift intermediate is disfavored kinetically compared to the [1,3]-H shift to the [8 + 2] isomer.
机译:进行了乙烯基苯呋喃和乙炔二甲酸二甲酯(DMAD)设计[8 + 2]反应的实验测试,结果表明该反应在不同条件下产生了意外的加成产物。在热条件下在甲苯中进行反应时,生成了被称为[8 + 2]异构体的环氧苯菲。在本研究中已经研究了该反应的范围。此外,实验和理论计算已进行调查vinylphenylfuran和DMAD之间的反应是如何发生的。出人意料的是,该反应不涉及预期的[8 + 2]中间体邻喹啉甲烷。相反,该反应从DMAD和乙烯基苯基呋喃的呋喃部分之间的分子间狄尔斯-阿尔德反应开始,然后发生意想不到的分子内烯烃-烯烃偶联。此步骤生成双自由基物质,然后进行[1,3] -H移位,以得到实验观察到的氧杂菲。 DFT计算显示,无法获得[8 + 2]环加合物,因为与[1,3] -H相比,[1,5]-乙烯基转移中间体的[1,5] -H转移过程在动力学上不利转变为[8 + 2]异构体。

著录项

相似文献

  • 外文文献
  • 中文文献
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号