Byers Jeffery A, Jamison Timothy F
Department of Chemistry, Massachusetts Institute of Technology, Cambridge, Massachusetts 02139, USA.
J Am Chem Soc. 2009 May 13;131(18):6383-5. doi: 10.1021/ja9004909.
A regioselective epoxy alcohol cyclization promoted by the combination of neutral water and a tetrahydropyran template was investigated through a series of mechanistic experiments carried out on an epoxy alcohol containing a tetrahydropyran ring (1a) and its carbocyclic congener (1b). In contrast to 1a, cyclizations of 1b were unselective and displayed significantly faster reaction rates suggesting that the tetrahydropyran oxygen in 1a is requisite for regioselective cyclization. Reactions for both substrates were shown to occur in solution and under kinetic control without significant influence from hydrophobic effects. Kinetic measurements carried out in water/dimethyl sulfoxide mixtures suggest that 1b reacts exclusively through an unselective pathway requiring one water molecule more than what is required to solvate the epoxy alcohol. Similar experiments for 1a suggest a competition between an unselective and a selective pathway requiring one and two water molecules in excess of those required to solvate 1a, respectively. The selective pathway observed for 1a but not in 1b is rationalized by electronic and conformational differences between the two compounds.
通过对含有四氢吡喃环的环氧醇(1a)及其碳环类似物(1b)进行一系列机理实验,研究了中性水和四氢吡喃模板组合促进的区域选择性环氧醇环化反应。与1a不同,1b的环化反应没有选择性,且反应速率明显更快,这表明1a中的四氢吡喃氧对于区域选择性环化是必需的。两种底物的反应均显示在溶液中且在动力学控制下发生,不受疏水效应的显著影响。在水/二甲基亚砜混合物中进行的动力学测量表明,1b仅通过一种非选择性途径反应,该途径比溶剂化环氧醇所需的水分子多一个。对1a进行的类似实验表明,在非选择性和选择性途径之间存在竞争,选择性途径分别比溶剂化1a所需的水分子多一个和两个。1a中观察到但1b中未观察到的选择性途径可通过两种化合物之间的电子和构象差异来解释。