Institute for Research in Biomedicine and Department of Organic Chemistry, University of Barcelona, Baldiri Reixac, 10. 08028 Barcelona, Spain.
Molecules. 2010 Feb 23;15(2):1041-73. doi: 10.3390/molecules15021041.
An overview of the synthesis and applications of chiral 2,3-epoxy alcohols containing unsaturated chains is presented. One of the fundamental synthetic routes to these compounds is Sharpless asymmetric epoxidation, which is reliable, highly chemoselective and enables easy prediction of the product enantioselectivity. Thus, unsaturated epoxy alcohols are readily obtained by selective oxidation of the allylic double bond in the presence of other carbon-carbon double or triple bonds. The wide availability of epoxy alcohols with unsaturated chains, the versatility of the epoxy alcohol functionality (e.g. regio- and stereo-selective ring opening; oxidation; and reduction), and the arsenal of established alkene chemistries, make unsaturated epoxy alcohols powerful starting materials for the synthesis of complex targets such as biologically active molecules. The popularization of ring-closing metathesis has further increased their value, making them excellent precursors to cyclic compounds.
本文综述了含不饱和链的手性 2,3-环氧醇的合成与应用。其中一种基本的合成方法是 Sharpless 不对称环氧化,该方法可靠、高化学选择性且易于预测产物的对映选择性。因此,在其他碳-碳双键或三键存在的情况下,通过对烯丙基双键的选择性氧化,很容易得到不饱和环氧醇。具有不饱和链的环氧醇广泛存在,环氧醇官能团的多功能性(例如区域和立体选择性开环;氧化;和还原),以及成熟的烯烃化学,使得不饱和环氧醇成为合成复杂目标物(如生物活性分子)的有力起始原料。闭环复分解反应的普及进一步提高了它们的价值,使它们成为环状化合物的优良前体。