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Catalytic asymmetric synthesis of a nitrogen heterocycle through stereocontrolled direct photoreaction from electronically excited state

机译:通过电子激发态的立体控制直接光反应催化合成氮杂环

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摘要

The reactivity of photoexcited molecules has been extensively studied for decades but until today direct bond-forming reactions of such excited states in a catalytic and asymmetric fashion are restricted to the synthesis of cyclobutanes via [2 + 2] photocycloadditions. Herein, we demonstrate a previously elusive visible-light-induced catalytic asymmetric [2 + 3] photocycloaddition of alkenes with vinyl azides. A wide range of complex 1-pyrrolines are obtained as single diastereoisomers and with up to >99% enantiomeric excess using a simple reaction setup and mild reaction conditions. The reaction is proposed to proceed through the photoexcitation of a complex out of chiral rhodium catalyst coordinated to α,β-unsaturated N-acylpyrazole substrates. All reactive intermediates remain bound to the catalysts thereby providing a robust catalytic scheme (no exclusion of air necessary) with excellent stereocontrol. This work expands the scope of stereocontrolled bond-forming reactions of photoexcited intermediates by providing catalytic asymmetric access to a key nitrogen heterocycle in organic chemistry.
机译:对光激发分子的反应性已经进行了数十年的广泛研究,但是直到今天,这种激发态以催化和不对称方式直接形成键的反应仅限于通过[2 ++ 2]光环加成反应合成环丁烷。本文中,我们证明了烯烃与乙烯基叠氮化物的先前难以捉摸的可见光诱导的催化不对称[2 ++ 3]光环加成反应。使用简单的反应设置和温和的反应条件,可以获得多种复杂的1-吡咯啉,它们是单一的非对映异构体,对映体过量高达> 99%。提出该反应是通过从与α,β-不饱和的N-酰基吡唑底物配位的手性铑催化剂中光激发复合物进行的。所有的反应性中间体都保持与催化剂的结合,从而提供了具有出色的立体控制性能的稳健的催化方案(无需排除空气)。这项工作通过提供对有机化学中关键氮杂环的催化不对称进入,扩大了光激发中间体的立体控制键形成反应的范围。

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