College of Chemistry, Beijing Normal University, Beijing 100875, China.
J Comput Chem. 2010 May;31(7):1376-84. doi: 10.1002/jcc.21422.
We report the mechanism of asymmetric nitroaldol (Henry) reaction catalyzed by a dinuclear Zn complex using density functional theory. The experimentally proposed catalytic cycle is validated, in which the first step is the deprotonation of nitromethane by the ethyl anion of the catalyst, subsequently a C-C bond formation step, and then the protonation of the resulting alkoxide. Three mechanistic scenarios (differing in binding modes) have been considered for the C-C bond formation step. The origin of the enantioselectivity is discussed. Our calculations supported that the S configurations are the major products, which is in agreement with the experimental observations.
我们报告了双核 Zn 配合物催化不对称硝基羟醛(Henry)反应的机理,使用了密度泛函理论。实验提出的催化循环得到了验证,其中第一步是催化剂中乙基阴离子对硝基甲烷的去质子化,随后是 C-C 键形成步骤,然后是生成的烷氧基的质子化。对于 C-C 键形成步骤,考虑了三种机制情景(结合模式不同)。讨论了对映选择性的起源。我们的计算支持 S 构型是主要产物,这与实验观察结果一致。