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首页> 外文期刊>European journal of organic chemistry >The Diene Effect: The Design, Development, and Mechanistic vestigation of Metal-Catalyzed Diene-yne, Diene-ene, and Diene-allene [2+2+1]Cycloaddition Reactions
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The Diene Effect: The Design, Development, and Mechanistic vestigation of Metal-Catalyzed Diene-yne, Diene-ene, and Diene-allene [2+2+1]Cycloaddition Reactions

机译:二烯效应:金属催化的二烯-炔,二烯-烯和二烯-丙二烯[2 + 2 + 1]环加成反应的设计,开发和机理研究

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摘要

Metal-catalyzed diene-yne, diene-ene, and diene-allene [2+2+1] cycloaddition reactions provide new methods for the facile construction of highly functionalized five-membered rings. These reactions can be conducted with a variety of substrate substitution patterns and functional groups and often in the absence of solvent. The special reactivity of dienes, a key to enabling or enhancing the effectiveness of the [2+2+1] and other reactions, is significantly different from that of alkynes, alkenes, or allenes. For example, the [2+2+1] reaction of a diene-yne is accelerated compared to that of the corresponding ene-yne. An even more dramatic “diene effect” is found with diene-enes and diene-allenes. While bis-enes and ene-allenes are not reported to yield [2+2+1] cycloadducts, the related diene-enes and diene-allenes undergo efficient [2+2+1] cycloadditions, providing new routes to cyclopentanones and alkylidenecyclopentanones. Mechanistic studies suggest that the unique reactivity observed with dienes arises from their participation in the putative rate-determining reductive elimination step by providing an additional energy-lowering oordination site for the transition metal catalyst.
机译:金属催化的二烯-炔,二烯-烯和二烯-丙二烯[2 + 2 + 1]环加成反应为轻松构建高度官能化的五元环提供了新方法。这些反应可以使用多种底物取代模式和官能团进行,并且通常在不存在溶剂的情况下进行。二烯的特殊反应性是实现或增强[2 + 2 + 1]和其他反应有效性的关键,它与炔烃,烯烃或丙二烯的反应活性显着不同。例如,与相应的烯-炔的反应相比,二烯-炔的[2 + 2 + 1]反应被加速。对于二烯-烯和二烯-丙二烯,发现了甚至更显着的“二烯效应”。虽然没有报道双烯和烯-烯会产生[2 + 2 + 1]环加合物,但相关的二烯-烯和二烯-烯烯进行有效的[2 + 2 + 1]环加成,为环戊酮和亚烷基环戊酮提供了新途径。机理研究表明,与二烯的独特反应性是由于它们为过渡金属催化剂提供了一个额外的降低能量配位位点,从而参与了假定的决定速率的还原消除步骤。

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