Simaan Samah, Masarwa Ahmad, Zohar Elinor, Stanger Amnon, Bertus Philippe, Marek Ilan
The Mallat Family Laboratory of Organic Chemistry, Schulich Faculty of Chemistry, and the Lise Meitner-Minerva, Center for Computational Quantum Chemistry, Technion-Israel Institute of Technology, Technion City, Haifa 32000 (Israel), Fax: (+972) 4 829 3709.
CNRS UMR 6011, Unite de Chimie Organique et Moleculaire (UCO2M), Universite du Maine, Avenue O. Messian, 72085 Le Mans Cedex 9 (France).
Chemistry. 2009 Aug 24;15(34):8449-8464. doi: 10.1002/chem.200901074.
The copper-catalyzed carbomagnesiation (or hydrometalation) reaction of chiral cyclopropenylcarbinol derivatives, obtained by means of a kinetic resolution of secondary allylic alcohols, leads to an easy and straightforward preparation of enantiomerically pure alkylidenecyclopropane derivatives. The reaction mechanism is composed of a syn-carbometalation followed by a syn-elimination reaction. To gain further insight into the reaction mechanism of the carbometalation, the diastereoselective formation of cyclopropylcarbinol was also achieved and was found to be very sensitive to the nature of the organometallic species used for the addition reaction. Cyclopropylcarbinol could also be prepared through a diastereoselective reduction of cyclopropenylcarbinol derivatives. Finally, functionalization of enantiomerically enriched cyclopropenylcarbinols into the corresponding acetate or phosphinite derivatives leads, under mild conditions, to various enantiomerically pure heterosubstituted alkylidenecyclopropanes.
通过仲烯丙醇的动力学拆分得到的手性环丙烯基甲醇衍生物的铜催化碳镁化(或氢金属化)反应,能简便直接地制备对映体纯的亚烷基环丙烷衍生物。反应机理由顺式碳金属化随后的顺式消除反应组成。为了进一步深入了解碳金属化的反应机理,还实现了环丙基甲醇的非对映选择性形成,并且发现其对用于加成反应的有机金属物种的性质非常敏感。环丙基甲醇也可以通过环丙烯基甲醇衍生物的非对映选择性还原制备。最后,在温和条件下,将对映体富集的环丙烯基甲醇官能化为相应的乙酸酯或亚膦酸酯衍生物,可得到各种对映体纯的杂取代亚烷基环丙烷。