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Asymmetric Catalysis Special Feature Part I: Effect of sulfide structure on enantioselectivity in catalytic asymmetric epoxidation of aldehydes: Mechanistic insights and implications

机译:不对称催化的特殊特征第一部分:醛的催化不对称环氧化中硫化物结构对对映选择性的影响:机理的见解和启示

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摘要

Bridged bicyclic sulfide 1 was originally found to provide high levels of asymmetric induction in sulfur ylide-mediated epoxidations. This sulfide possesses chirality in the [2.2.1] thioether moiety and the [2.2.1] camphor-derived carbocyclic moiety. To determine whether the optimal sulfide had been used, a diastereomer of sulfide 1 in which the stereochemistry of the [2.2.1] carbocycle was reversed (sulfide 5) was prepared and studied as an epoxidation catalyst. This diastereomer gave considerably lower levels of asymmetric induction than the original sulfide 1. From computational and x-ray studies it was found that sulfide 5 gave rise to a more hindered ylide, which reacted more reversibly with aldehydes leading to lower enantioselectivity. Conditions that reduced reversibility were also tested and high enantioselectivities were returned for sulfide 5 (similar to sulfide 1). The implications for the synthesis of chiral sulfides for asymmetric epoxidations are discussed.
机译:最初发现,桥联的双环硫化物1在硫叶立德介导的环氧化反应中提供高水平的不对称诱导。该硫化物在[2.2.1]硫醚部分和[2.2.1]樟脑衍生的碳环部分中具有手性。为了确定是否使用了最佳的硫化物,制备了其中[2.2.1]碳环的立体化学颠倒了的硫化物1的非对映异构体(硫化物5),并作为环氧化催化剂进行了研究。该非对映异构体比原始硫化物1产生的不对称诱导程度要低得多。从计算和X射线研究中发现,硫化物5产生了更受阻的叶立德,该叶立德更易​​与醛发生可逆反应,从而降低对映选择性。还测试了降低可逆性的条件,并返回了硫化物5(类似于硫化物1)的高对映选择性。讨论了不对称环氧化的手性硫化物合成的意义。

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