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

机译:钴(III)-碳自由基和邻二甲in甲烷中间体的催化合成二苯并环辛烯

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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 Ccarbene−Caryl 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 CoIII–carbene radical intermediates followed by dissociation of an ortho‐quinodimethane that undergoes 8π cyclization. The mechanism is supported by DFT calculations, and the presence of radical‐type intermediates was confirmed by trapping experiments.
机译:以[Co(TPP)](TPP =四苯基卟啉)为催化剂的邻苯二甲烯基芳基N-甲苯磺酰基的金属金属活化能控制氧化还原非纯卡宾中间体的单电子反应性。这种方法提供了一种制备八元环的新颖途径,利用贱金属催化通过选择性的卡宾烯-芳基环化反应来构建一系列独特的二苯并环辛烯。获得了所需的八元环产品,收率好至极好。容许多种芳族取代基。所提出的反应机理涉及分子内氢原子转移(HAT)到Co III -碳烯自由基中间体,然后解离经历8π环化的邻喹二甲烷。该机制得到DFT计算的支持,并且自由基诱集实验证实了自由基型中间体的存在。

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