Institut für Chemie, Technische Universität Berlin, Strasse des 17. Juni 115, 10623, Berlin, Germany.
Mulliken Center for Theoretical Chemistry, Institut für Physikalische und Theoretische Chemie, Rheinische Friedrich-Wilhelms-Universität Bonn, Beringstraße 4, 53115, Bonn, Germany.
Angew Chem Int Ed Engl. 2023 Jul 17;62(29):e202305295. doi: 10.1002/anie.202305295. Epub 2023 Jun 14.
An enantioselective reduction of simple carbenium ions with cyclohexadienes containing a hydridic C-H bond at an asymmetrically substituted carbon atom is disclosed. The net reaction is a transfer hydrogenation of alkenes (styrenes) only employing chiral cyclohexadienes as dihydrogen surrogates. The trityl cation is used to initiate a Brønsted acid-promoted process, in which a delicate intermolecular capture of a carbenium-ion intermediate by the aforementioned chiral hydride source is enantioselectivity determining. Exclusively non-covalent interactions are rendering one of the transition states energetically more favored, giving the reduction products in good enantiomeric ratios. The computed reaction mechanism supports the present findings as well as previous results obtained from studies on other transfer-hydrogenation methods involving the cyclohexadiene platform.
本文报道了一种含有手性取代环己二烯氢化物 C-H 键的环己二烯对简单碳正离子的对映选择性还原。该反应是一种不对称取代碳原子上的烯烃(苯乙烯)的转移氢化反应,仅使用手性环己二烯作为氢源。三苯甲基阳离子引发 Brønsted 酸促进的过程,其中上述手性氢化物源对碳正离子中间体的精细分子间捕获是对映选择性决定的。仅非共价相互作用使其中一个过渡态在能量上更有利,从而以良好的对映体比例得到还原产物。计算得到的反应机理支持了目前的发现以及先前在涉及环己二烯平台的其他转移氢化方法的研究中获得的结果。