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Batch and Flow Photochemical Benzannulations Based on the Reaction of Ynamides and Diazo Ketones. Application to the Synthesis of Polycyclic Aromatic and Heteroaromatic Compounds

机译:基于Ynamides和重氮酮反应的间歇和流动光化学苯并呋喃。多环芳烃和杂芳族化合物的合成

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摘要

Highly substituted polycyclic aromatic and heteroaromatic compounds are produced via a two-stage tandem benzannulation/cyclization strategy. The initial benzannulation step proceeds via a pericyclic cascade mechanism triggered by thermal or photochemical Wolff rearrangement of a diazo ketone. The photochemical process can be performed using a continuous flow reactor which facilitates carrying out reactions on a large scale and minimizes the time required for photolysis. Carbomethoxy ynamides as well as more ketenophilic bis-silyl ynamines and N-sulfonyl and N-phosphoryl ynamides serve as the reaction partner in the benzannulation step. In the second stage of the strategy, RCM generates benzofused nitrogen heterocycles, and various heterocyclization processes furnish highly substituted and polycyclic indoles of types that were not available by using the previous cyclobutenone-based version of the tandem strategy.
机译:高度取代的多环芳族和杂芳族化合物是通过两阶段串联苯环化/环化策略生产的。最初的苯环烷基化步骤是通过重氮酮的热或光化学Wolff重排触发的周环级联机制进行的。可以使用连续流动反应器进行光化学过程,该连续流动反应器有助于大规模地进行反应并使光解所需的时间最小化。碳甲氧基炔基酰胺,以及更亲酮的双甲硅烷基炔基胺和N-磺酰基和N-磷酰基炔基酰胺在苯环烷基化步骤中用作反应伙伴。在该策略的第二阶段,RCM生成苯并稠合的氮杂环,各种杂环化过程提供了高度取代的多环吲哚,而这些类型的吲哚是使用先前基于环丁烯酮的串联策略无法获得的。

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