Brown Laboratories, Department of Chemistry and Biochemistry, University of Delaware, Newark, Delaware 19716, USA.
J Am Chem Soc. 2012 Jul 4;134(26):11035-43. doi: 10.1021/ja3046712. Epub 2012 Jun 19.
Intermolecular Rh-catalyzed reactions of cyclic α-diazocarbonyl compounds with chemoselectivity over β-hydride elimination are described. These methods represent the first general intermolecular reactions of Rh-carbenoids that are selective over tertiary β-C-H bond migration. Successful transformations include cyclopropanation, cyclopropenation, and various X-H insertion reactions with a broad scope of substrates. We propose that the intermolecular approach of substrates to carbenes from acyclic diazo precursors may be relatively slow due to a steric interaction with the ester function, which is perpendicular to the π-system of the carbene. For carbenes derived from five- and six-membered cyclic α-diazocarbonyls, it is proposed that the carbene is constrained to be more conjugated with the carbonyl, thereby relieving the steric interaction for intermolecular reactions, and accelerating the rate of intermolecular reactivity relative to intramolecular β-hydride migration. However, attempts to use α-diazo-β-ethylcaprolactone in intermolecular cyclopropanation with styrene were unsuccessful. It is proposed that the conformational flexibility of the seven-membered ring allows the carbonyl to be oriented perpendicular to Rh-carbene. The significant intermolecular interaction between the carbonyl and approaching substrate is in agreement with the poor ability of α-diazo-β-ethylcaprolactone to participate in intermolecular cyclopropanation reactions. DFT calculations provide support for the mechanistic proposals that are described.
描述了环状α-重氮羰基化合物与 Rh 催化的分子间反应的化学选择性,其中β-氢消除具有选择性。这些方法代表了 Rh-卡宾的第一个普遍的分子间反应,其对叔 C-H 键迁移具有选择性。成功的转化包括环丙烷化、环丙烯化和各种 X-H 插入反应,底物范围广泛。我们提出,由于酯基与卡宾的π体系垂直,与无环重氮前体的底物对卡宾的分子间接近可能相对较慢,这是由于空间相互作用。对于衍生自五元环和六元环α-重氮羰基的卡宾,提出卡宾被约束为与羰基更共轭,从而减轻了分子间反应的空间相互作用,并加速了分子间反应的速率相对于分子内β-氢迁移。然而,尝试用α-重氮-β-乙基己内酯与苯乙烯进行分子间环丙烷化的尝试没有成功。我们提出,七元环的构象灵活性允许羰基与 Rh-卡宾垂直定向。羰基与接近的底物之间的显著分子间相互作用与α-重氮-β-乙基己内酯参与分子间环丙烷化反应的能力差是一致的。DFT 计算为所描述的机理提案提供了支持。