Institute of Chemical Research of Catalonia (ICIQ), Av Països Catalans 16, 43007 Tarragona, Spain.
Chemistry. 2011 Aug 29;17(36):10050-7. doi: 10.1002/chem.201101166. Epub 2011 Jul 19.
Density functional calculations were carried out to ascertain the origin of enantioselectivity in the brucine N-oxide (BNO)-assisted enantioselective Pauson-Khand reaction (PKR) of norbornene with 2-methyl-3-butyn-2-ol. The computed ee value in acetone is 68 % (R), which compares well to the previously reported experimental value of 58 % (R). In DME the computed ee value of 76 % (R) is in excellent agreement with the experimentally determined value of 78 % (R). The mechanism of enantioselectivity consists of several steps. First, the dicobalt complex is activated by BNO with chirality transfer from enantiopure BNO to the dicobalt complex. Second, competition occurs between a racemization process and complexation with the olefin reagent, which leads to the products. The lower ee value in acetone is due to the lower energy barrier of the racemization process. Calculations show that replacement of BNO by a hypothetical more enantioselective chiral N-oxide will hardly increase the ee value beyond 90 %.
密度泛函计算被用来确定金鸡纳碱 N-氧化物(BNO)辅助下降冰片烯与 2-甲基-3-丁炔-2-醇的对映选择性 Pauson-Khand 反应(PKR)中对映选择性的起源。在丙酮中的计算 ee 值为 68%(R),与之前报道的实验值 58%(R)相当。在 DME 中,计算的 ee 值为 76%(R),与实验测定的 78%(R)非常吻合。对映选择性的机制包括几个步骤。首先,BNO 激活二钴配合物,手性从手性纯 BNO 转移到二钴配合物。其次,发生消旋化过程和与烯烃试剂的络合之间的竞争,导致产物的形成。在丙酮中较低的 ee 值是由于消旋化过程的能量势垒较低。计算表明,用假设的更具对映选择性的手性 N-氧化物替代 BNO,ee 值很难超过 90%。