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探究在雅各布森-胜木环氧化反应中起作用的竞争性对映选择性反应途径:甲基取代苯乙烯的动力学研究

Probing competitive enantioselective approach vectors operating in the Jacobsen-Katsuki epoxidation: a kinetic study of methyl-substituted styrenes.

作者信息

Fristrup Peter, Dideriksen Brian B, Tanner David, Norrby Per-Ola

机构信息

Department of Chemistry, Technical University of Denmark, Building 201 Kemitorvet, DK-2800 Kgs. Lyngby, Denmark.

出版信息

J Am Chem Soc. 2005 Oct 5;127(39):13672-9. doi: 10.1021/ja051851f.

Abstract

This paper describes a study of reactivity and enantioselectivity for a series of methyl-substituted styrenes in the Jacobsen-Katsuki (Mn(salen)-catalyzed) epoxidation reaction. Competition experiments provided kinetic data for the reactivity of the seven possible methyl-substituted styrenes (mono-, di- and trisubstituted) relative to styrene itself, ee values were measured by chiral GC, and absolute configurations were secured by chemical correlation. Of particular interest was the switch in absolute configuration at the benzylic position of the epoxides derived from (Z)- and (E)-alpha,beta-dimethylstyrene, respectively. The results could be rationalized in terms of an approach vector with the phenyl substituent proximal to the salen. As opposed to alkyl groups, a proximal phenyl group has very little effect on the rate of the reaction. Consideration of distal vs proximal approach allows prediction of absolute stereochemistry as a function of alkene substitution pattern. Trisubstituted alkenes with one phenyl group cis to the alkene hydrogen can be identified as a favored substrate class in the title reaction, with both rate and selectivity close to the classic (Z)-beta-substituted styrene substrates.

摘要

本文描述了一系列甲基取代苯乙烯在雅各布森-胜木(Mn(salen)催化)环氧化反应中的反应活性和对映选择性研究。竞争实验提供了七种可能的甲基取代苯乙烯(单取代、二取代和三取代)相对于苯乙烯本身反应活性的动力学数据,通过手性气相色谱法测量对映体过量值(ee值),并通过化学关联确定绝对构型。特别令人感兴趣的是,分别由(Z)-和(E)-α,β-二甲基苯乙烯衍生的环氧化物在苄基位置的绝对构型发生了转变。根据一种方法向量可以合理解释这些结果,该向量中苯基取代基靠近salen。与烷基不同,靠近的苯基对反应速率影响很小。考虑远端与近端的方法可以预测绝对立体化学是烯烃取代模式的函数。在标题反应中,具有一个苯基与烯烃氢顺式的三取代烯烃可被确定为一种有利的底物类别,其速率和选择性均接近经典的(Z)-β-取代苯乙烯底物。

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