Jung Byunghyuck, Kang Sung Ho
Center for Molecular Design and Synthesis, Department of Chemistry, School of Molecular Science (BK21), Korea Advanced Institute of Science and Technology (KAIST), Daejeon 305-701, Korea.
Proc Natl Acad Sci U S A. 2007 Jan 30;104(5):1471-5. doi: 10.1073/pnas.0607865104. Epub 2007 Jan 22.
Catalytic enantioselective desymmetrization of meso-2-substituted glycerols has been developed to secure a novel synthetic route to chiral tertiary alcohols. The transformation has been realized by monobenzoylation using benzoyl chloride and triethylamine in the presence of the imine ligand (25)-CuCl2 complex in THF at ambient temperature. The desymmetrization turned out to be greatly dependent on acylating reagent, base, solvent, and needless to say, catalyst. Extensive screening of chiral ligands led us to combine bromopyridinecarboxaldehyde 1 and phenyloxazoline amine 12 derived from tert-leucine, the bromo and phenyl substituents of which proved to be indispensable. All of the substrates have been desymmetrized to the corresponding monobenzoates with high enantioselectivity up to 96% enantiomeric excess. The catalytic system allows broad structural diversity of substrates and its synthetic versatility has been demonstrated by an efficient synthetic route to a known key precursor 68 of triazole antifungals.
已开发出内消旋-2-取代甘油的催化对映选择性去对称化反应,以确保获得一种合成手性叔醇的新途径。该转化反应是在四氢呋喃中,于室温下,在亚胺配体(25)-氯化铜络合物存在的情况下,使用苯甲酰氯和三乙胺进行单苯甲酰化反应来实现的。结果表明,去对称化反应很大程度上取决于酰化试剂、碱、溶剂,当然还有催化剂。对手性配体的广泛筛选使我们将源自叔亮氨酸的溴吡啶甲醛1和苯基恶唑啉胺12结合起来,其中的溴和苯基取代基被证明是必不可少的。所有底物都已被去对称化为相应的单苯甲酸酯,对映选择性高达96%对映体过量。该催化体系允许底物具有广泛的结构多样性,并且通过一条有效合成已知三唑类抗真菌剂关键前体68的路线,证明了其合成通用性。