首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Substituent-dependent generation of tricyclic frameworks by the rhodium-catalyzed cycloisomerization of homopropargyl allene-alkynes: a theoretical study
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Substituent-dependent generation of tricyclic frameworks by the rhodium-catalyzed cycloisomerization of homopropargyl allene-alkynes: a theoretical study

机译:通过铑催化的环丙基丙酮 - 炔 - 炔 - 炔 - 炔烃的铑催化剂依赖性依赖于三环框架:理论研究

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摘要

Polycyclic compounds having biological activities can be modified by employing different substituents. Substituent-dependent generation of tricyclic frameworks by the rhodium-catalyzed cycloisomerization of homopropargyl allene-alkynes was investigated by using density functional theory calculations. A mechanistic study revealed that all the three reactions, A (Z = Me, X =Bu-t), B (Z = Me, X = Me), and C (Z = H, X = Me), underwent initial oxidative cyclization, from which the divergent cycloisomerization was triggered when different substituents were employed. It was found from our calculations that reactions A and B underwent alkyne insertion into the Rh-C(sp(2)) bond and resulted in a key metal carbenoid intermediate. From the metal carbenoid species, reaction A bearing a more hinderedtert-butyl group prefers 1,2-hydrogen migration to produce a 6/5/4 tricyclic product, while reaction B bearing a less hindered methyl group prefers 1,2-carbon migration leading to ring expansion and producing a 6/5/5 tricyclic product. The origins of the distinct selectivity were disclosed, which are beneficial for the development of novel related reactions. For reaction C (Z=H, Z=H or Z=H, Z=Me), the beta-hydrogen elimination was found to be favored over the alkyne insertion into the Rh-C(sp(2)) bond and thus the monocyclic product is delivered. The E/Z effects involved in the above two cases were also discussed.
机译:具有生物活性的多环化合物可以通过采用不同的取代基来改性。采用密度函数理论计算研究了通过使用密度函数理论计算研究了通过铑催化的环丙基丙酮的环丙异构化的取代基框架。机械研究表明,所有的三个反应,a(z = me,x = bu-t),b(z = me,x = me),c(z = h,x = me),接受初始氧化环化,当使用不同的取代基时触发发散的环旋异构化。从我们的计算中发现,反应A和B接受炔烃进入RH-C(SP(2))键并导致关键金属甲苯中间体。从金属羧酸种,反应轴承更受阻替替丁基更喜欢1,2-氢迁移以产生6/5/4三环产物,而反应B轴承不受阻碍的甲基更喜欢1,2-碳迁移环形膨胀并产生6/5/5三环产品。公开了不同选择性的起源,这对新型相关反应的发展有益。对于反应C(Z = H,Z = H或Z = H,Z = ME),发现β-氢消除在炔烃插入rh-C(SP(2))键并因此是单环产品送达。还讨论了上述两种情况的E / Z效应。

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