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铑配合物催化的硅引发的烯二炔羰基化碳三环化反应及[2+2+2+1]环加成反应

Silicon-initiated carbonylative carbotricyclization and [2+2+2+1] cycloaddition of enediynes catalyzed by rhodium complexes.

作者信息

Bennacer Bibia, Fujiwara Masaki, Lee Seung-Yub, Ojima Iwao

机构信息

Department of Chemistry, State University of New York at Stony Brook, Stony Brook, New York 11794-3400, USA.

出版信息

J Am Chem Soc. 2005 Dec 21;127(50):17756-67. doi: 10.1021/ja054221m.

Abstract

The reaction of dodec-11-ene-1,6-diynes or their heteroatom congeners with a hydrosilane catalyzed by Rh(acac)(CO)2 at ambient temperature and pressure of CO gives the corresponding fused 5-7-5 tricyclic products, 5-oxo-1,3a,4,5,7,9-hexahydro-3H-cyclopenta[e]azulenes or their heteroatom congeners, in excellent yields through a unique silicon-initiated cascade carbonylative carbotricyclization (CO-SiCaT) process. It has also been found that the 5-7-5 fused tricyclic products can be obtained from the same type of enediynes and CO through a novel intramolecular [2+2+2+1] cycloaddition process. The characteristics of these two tricyclization processes and the fundamental differences in their reaction mechanisms are discussed. This novel higher-order cycloaddition reaction has also been successfully applied to the tricyclization of undeca-5,10-diyn-1-als, affording the corresponding 5-7-5 fused-ring products bearing a seven-membered lactone moiety. Related [2+2+2] tricyclizations of enediyne and diynal substrates are also discussed. These newly discovered reactions can construct multiple bonds all at once, converting linear starting materials to polycyclic compounds in a single step. Thus, these new processes provide innovative routes to functionalized polycyclic compounds that are useful for the syntheses of natural and unnatural products.

摘要

在室温及一氧化碳压力下,由Rh(acac)(CO)₂催化的十二碳-11-烯-1,6-二炔或其杂原子类似物与硅烷的反应,通过独特的硅引发级联羰基化碳环化(CO-SiCaT)过程,以优异的产率得到相应的稠合5-7-5三环产物、5-氧代-1,3a,4,5,7,9-六氢-3H-环戊二烯并[e]薁或其杂原子类似物。还发现,5-7-5稠合三环产物可通过一种新型分子内[2+2+2+1]环加成过程,从相同类型的烯二炔和一氧化碳中获得。讨论了这两种环化过程的特点及其反应机理的根本差异。这种新型的高阶环加成反应也已成功应用于十一碳-5,10-二炔-1-醛的环化反应,得到了带有七元内酯部分的相应5-7-5稠环产物。还讨论了烯二炔和二炔醛底物相关的[2+2+2]环化反应。这些新发现的反应可以一次性构建多个键,一步将线性起始原料转化为多环化合物。因此,这些新过程为功能化多环化合物提供了创新路线,对天然和非天然产物的合成具有重要意义。

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