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Catalytic Dibenzocyclooctene Synthesis via Cobalt(III)-Carbene Radical and ortho-Quinodimethane Intermediates

机译:催化二苯苄溶胶辛醚通过钴(III) - 基团和右喹甲酰胺中间体

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摘要

The metalloradical activation of ortho-benzallylaryl N-tosyl hydrazones with [Co(TPP)] (TPP=tetraphenylporphyrin) as the catalyst enabled the controlled exploitation of the single-electron reactivity of the redox non-innocent carbene intermediate. This method offers a novel route to prepare eight-membered rings, using base metal catalysis to construct a series of unique dibenzocyclooctenes through selective C-carbene-C-aryl cyclization. The desired eight-membered-ring products were obtained in good to excellent yields. A large variety of aromatic substituents are tolerated. The proposed reaction mechanism involves intramolecular hydrogen atom transfer (HAT) to Co-III-carbene radical intermediates followed by dissociation of an ortho-quinodimethane that undergoes 8 pi cyclization. The mechanism is supported by DFT calculations, and the presence of radical-type intermediates was confirmed by trapping experiments.
机译:用[CO(TPP)](TPP =四苯基卟啉)作为催化剂的邻苯甲酰芳亚甲苯乙烯腙的金属体活化使得对氧化还原非无辜卡宾中间体的单电子反应性进行受控开采。 该方法提供了一种制备八元环的新途径,使用基础金属催化来构建一系列独特的二苯并吲哚C-芳基环化。 得到所需的八元环产物,良好地获得优异的产率。 耐受各种芳族取代基。 所提出的反应机制涉及分子内氢原子转移(帽)至CO-III-甲基 - 基质中间体,然后解离邻喹甲烷的解离,该氨基二甲烷经历8个PI环化。 通过DFT计算支持该机制,通过捕获实验证实了自由基型中间体的存在。

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