Department of Chemistry , Wayne State University , Detroit , Michigan 48202 , United States.
Org Lett. 2018 Oct 19;20(20):6340-6344. doi: 10.1021/acs.orglett.8b02456. Epub 2018 Sep 28.
5- exo, 5- exo Cyclizations of conformationally unbiased propargylic aminyl radicals proceed with excellent yield, chemoselectivity, and diastereoselectivity under tin-free reductive cyclization conditions, regardless of the electronic environments and intermediate radical stabilization resulting from various olefin substituents. These conditions avoid the need for slow addition of initiator and reductant. By contrast, analogous 6- exo, 5- exo cyclizations require substituents capable of intermediate radical stabilization to avoid premature reduction products. These experimental results are corroborated by computations that further establish the reactivity of these aminyl radicals upon exposure to tin-free cyclization conditions.
5- exo、5- exo 环化反应的构象非约束性炔丙基氨自由基在无锡还原环化条件下以优异的收率、化学选择性和非对映选择性进行,无论各种烯烃取代基导致的电子环境和中间自由基稳定性如何。这些条件避免了缓慢添加引发剂和还原剂的需要。相比之下,类似的 6- exo、5- exo 环化需要具有中间自由基稳定能力的取代基来避免过早的还原产物。这些实验结果得到了计算结果的证实,进一步确定了这些氨自由基在无锡环化条件下的反应性。