Nakagawa Yoko, Nakayama Naofumi, Goto Hitoshi, Fujisawa Ikuhide, Chanthamath Soda, Shibatomi Kazutaka, Iwasa Seiji
Department of Environmental and Life Sciences, Toyohashi University of Technology, Toyohashi, Japan.
CONFLEX Corporation, Tokyo, Japan.
Chirality. 2019 Jan;31(1):52-61. doi: 10.1002/chir.23033. Epub 2018 Dec 4.
Computational chemical analysis of Ru(II)-Pheox-catalyzed highly enantioselective intramolecular cyclopropanation reactions was performed using density functional theory (DFT). In this study, cyclopropane ring-fused γ-lactones, which are 5.8 kcal/mol more stable than the corresponding minor enantiomer, are obtained as the major product. The results of the calculations suggest that the enantioselectivity of the Ru(II)-Pheox-catalyzed intramolecular cyclopropanation reaction is affected by the energy differences between the starting structures 5l and 5i. The reaction pathway was found to be a stepwise mechanism that proceeds through the formation of a metallacyclobutane intermediate. This is the first example of a computational chemical analysis of enantioselective control in an intramolecular carbene-transfer reaction using C -symmetric catalysts.
利用密度泛函理论(DFT)对Ru(II)-Pheox催化的高度对映选择性分子内环丙烷化反应进行了计算化学分析。在本研究中,作为主要产物得到了环丙烷环稠合的γ-内酯,其比相应的次要对映体稳定5.8千卡/摩尔。计算结果表明,Ru(II)-Pheox催化的分子内环丙烷化反应的对映选择性受起始结构5l和5i之间的能量差异影响。发现反应途径是通过形成金属环丁烷中间体进行的逐步机理。这是使用C对称催化剂对分子内卡宾转移反应中的对映选择性控制进行计算化学分析的首个实例。