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首页> 外文期刊>Angewandte Chemie >Trimethylsilyl-Protected Alkynes as Selective Cross-Coupling Partners in Titanium-Catalyzed [2+2+1] Pyrrole Synthesis
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Trimethylsilyl-Protected Alkynes as Selective Cross-Coupling Partners in Titanium-Catalyzed [2+2+1] Pyrrole Synthesis

机译:将三甲基甲硅烷基保护的炔烃作为钛催化[2 + 2 + 1]吡咯合成的选择性交叉偶联伴侣

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摘要

Trimethylsilyl (TMS)-protected alkynes served as selective alkyne cross-coupling partners in titanium-catalyzed [2+2+1] pyrrole synthesis. Reactions of TMS-protected alkynes with internal alkynes and azobenzene under the catalysis of titanium imido complexes yielded pentasubstituted 2-TMS-pyrroles with greater than 90% selectivity over the other nine possible pyrrole products. The steric and electronic effects of the TMS group were both identified to play key roles in this highly selective pyrrole synthesis. This strategy provides a convenient method to synthesize multisubstituted pyrroles as well as an entry point for further pyrrole diversification through facile modification of the resulting 2-silyl pyrrole products, as demonstrated through a short formal synthesis of the marine natural product lamellarin R.
机译:三甲基甲硅烷基(TMS) - 保护alkynes作为选择性炔烃交叉偶联伴侣在钛催化的[2 + 2 + 1]吡咯合成中。 在钛酰亚胺络合物催化下,在催化作用的丙基和偶氮苯乙烯的反应得到了戊二化的2-TMS-吡咯,其在其他九种可能的吡咯产品上的选择性大于90%。 TMS组的空间和电子效果均鉴定为在这种高度选择性吡咯合成中起到关键作用。 该策略提供了一种方便的方法,用于通过船舶天然产物Limellarin R的短正式合成证明,通过容易改变来合成多异胃泌素和进一步的吡咯多样化的切入点,以通过船上的天然产物Ladellar r的短正式合成所示。

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