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首页> 外文期刊>Chemical science >Divergent reaction pathways in gold-catalyzed cycloisomerization of 1,5-enynes containing a cyclopropane ring: dramatic ortho substituent and temperature effects
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Divergent reaction pathways in gold-catalyzed cycloisomerization of 1,5-enynes containing a cyclopropane ring: dramatic ortho substituent and temperature effects

机译:金催化的含环丙​​烷环的1,5-烯炔的环异构化反应中的不同反应途径:剧烈的邻位取代基和温度效应

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摘要

A gold(I)-catalyzed cycloisomerization of easily available 1,5-enynes containing a cyclopropane ring has been developed, efficiently providing cyclobutane-fused 1,4-cyclohexadiene, tricyclic cyclobutene, biscyclopropane and 1,3-cyclohexadiene derivatives in moderate to excellent yields. When the phenyl group was not ortho substituted, 1,4-cyclohexadienes could be produced. With an ortho substituent, three different products could be selectively synthesized by control of the temperature and the used gold(I) catalyst. The 1,5-enyne substrate first undergoes a classical enyne cycloisomerization to form a tricyclic cyclobutene key intermediate, which undergoes subsequent transformation to produce the desired products. A plausible reaction mechanism was proposed according to deuterium labeling experiments and intermediate trapping experiments, as well as DFT calculations. In our current reaction, the ortho substituent on the phenyl group controls the reaction outcome and the ortho substituent effect was found to originate from steric and electronic factors.
机译:已开发出金(I)催化的容易获得的含有环丙烷环的1,5-炔烃的环异构化,可有效地以中度到极好的方式提供环丁烷稠合的1,4-环己二烯,三环环丁烯,双环丙烷和1,3-环己二烯衍生物产量。当苯基未被邻位取代时,可以产生1,4-环己二烯。通过邻位取代基,可以通过控制温度和使用的金(I)催化剂选择性地合成三种不同的产物。 1,5-烯炔底物首先经历经典的烯炔环异构化反应,以形成三环环丁烯键中间体,然后对其进行后续转化,以产生所需的产物。根据氘标记实验和中间捕获实验以及DFT计算,提出了合理的反应机理。在我们目前的反应中,苯基上的邻位取代基控制反应的结果,并且发现邻位取代基的作用源于空间和电子因素。

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