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Carbon–carbon bond activation of cyclobutenones enabled by the addition of chiral organocatalyst to ketone

机译:通过向酮中添加手性有机催化剂可以实现环丁烯酮的碳-碳键活化

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摘要

The activation of carbon–carbon (C–C) bonds is an effective strategy in building functional molecules. The C–C bond activation is typically accomplished via metal catalysis, with which high levels of enantioselectivity are difficult to achieve due to high reactivity of metal catalysts and the metal-bound intermediates. It remains largely unexplored to use organocatalysis for C–C bond activation. Here we describe an organocatalytic activation of C–C bonds through the addition of an NHC to a ketone moiety that initiates a C–C single bond cleavage as a key step to generate an NHC-bound intermediate for chemo- and stereo-selective reactions. This reaction constitutes an asymmetric functionalization of cyclobutenones using organocatalysts via a C–C bond activation process. Structurally diverse and multicyclic compounds could be obtained with high optical purities via an atom and redox economic process.
机译:碳-碳(CC)键的激活是构建功能分子的有效策略。 C–C键的活化通常是通过金属催化完成的,由于金属催化剂和与金属结合的中间体的高反应性,很难实现高对映选择性。使用有机催化进行C-C键活化尚无定论。在这里,我们描述了通过向酮部分添加NHC来活化C–C键的有机催化作用,该过程会引发C–C单键裂解,这是生成用于化学和立体选择反应的NHC结合中间体的关键步骤。该反应通过CC键活化过程使用有机催化剂构成了环丁烯酮的不对称官能化。可以通过原子和氧化还原经济方法以高光学纯度获得结构多样的多环化合物。

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