Xu Jiaxi, Wei Tiezheng, Zhang Qihan
Key Laboratory of Bioorganic Chemistry and Molecular Engineering of Ministry of Education, Department of Chemical Biology, College of Chemistry and Molecular Engineering, Peking University, Beijing 100871, People's Republic of China.
J Org Chem. 2004 Oct 1;69(20):6860-6. doi: 10.1021/jo048959i.
The influence of electronic effects on the enantioselectivity of the oxazaborolidine-catalyzed asymmetric borane reduction of ketones has been observed and investigated with use of para-substituted acetophenones and propiophenones with a variety of functional groups and B-unsubstituted and B-methoxyoxazaborolidines derived from (S)-2-(diphenylhydroxymethyl)pyrrolidine with borane and trimethyl borate as catalysts in toluene and THF. The results indicate that Hammett linear free energy electronic effects on the enantioselectivity in the asymmetric reduction were observed and rationalized. Tuning electronic effects of the catalyst can improve the enantioselectivity in the reduction. Another interesting finding to be noted is that anions heavily affect the enantioselectivity, especially for the B-methoxy catalyst, because of their coordination with the boron atom in the catalysts.
利用对取代苯乙酮和苯丙酮(带有各种官能团)以及由(S)-2-(二苯基羟甲基)吡咯烷与硼烷和硼酸三甲酯衍生的B-未取代和B-甲氧基恶唑硼烷作为催化剂,在甲苯和四氢呋喃中,观察并研究了电子效应对恶唑硼烷催化的酮不对称硼氢化反应对映选择性的影响。结果表明,观察到并合理解释了哈米特线性自由能电子效应在不对称还原反应中对对映选择性的影响。调节催化剂的电子效应可以提高还原反应中的对映选择性。另一个值得注意的有趣发现是,阴离子会严重影响对映选择性,特别是对于B-甲氧基催化剂,这是因为它们与催化剂中的硼原子配位。