Wang Huan, Huang Jie, Wulff William D, Rheingold Arnold L
Department of Chemistry, Michigan State University, East Lansing, MI 48824, USA.
J Am Chem Soc. 2003 Jul 30;125(30):8980-1. doi: 10.1021/ja035428n.
The intramolecular benzannulations of carbene complexes with alkynes are examined where the alkyne is tethered to the alpha-carbon of the vinyl carbene complex. These reactions are sensitive to the length of the tether and to the nature of the solvent. With a tether length of 16 methylenes, the reaction occurs in the same fashion as the intermolecular reactions to give a p-cyclophane. With intermediate tether lengths (n = 10, 13), the reaction gives an additional p-cyclophane in which the two oxygen substituents are meta on the arene ring. This type of product is unprecedented from the reaction of carbene complexes and alkynes and is quite surprising because the formation of this product requires that the carbon-carbon bond between the alpha- and beta-carbons of the vinyl carbene complex is broken. A mechanism is proposed to account for this process which involves the crossed intramolecular [2 + 2] cycloaddition of the alkene and a ketene in a conjugated dienyl ketene to give a benzvalenone paddalane intermediate.
研究了卡宾配合物与炔烃的分子内苯环化反应,其中炔烃连接在乙烯基卡宾配合物的α-碳上。这些反应对连接链的长度和溶剂的性质敏感。当连接链长度为16个亚甲基时,反应以与分子间反应相同的方式进行,生成对环芳烷。对于中间连接链长度(n = 10, 13),反应会生成另一种对环芳烷,其中两个氧取代基在芳环上处于间位。这种类型的产物在卡宾配合物与炔烃的反应中是前所未有的,并且相当令人惊讶,因为该产物的形成要求乙烯基卡宾配合物的α-碳和β-碳之间的碳-碳键断裂。提出了一种机制来解释这一过程,该机制涉及烯烃与共轭二烯基烯酮中的烯酮进行交叉分子内[2 + 2]环加成,生成苯并戊二烯并环戊烷中间体。