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Probing Competitive and Co-operative Hydroxyl and Ammonium Hydrogen-Bonding Directed Epoxidations

机译:探测竞争性和合作羟基和铵氢键指向环氧化

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The diastereoselectivities and rates of epoxidation (upon treatment with Cl3CCO2H then m-CPBA) of a range of cis- and trans-4-aminocycloalk-2-en-1-ol derivatives (containing five-, six-, and seven-membered rings) have been investigated. In all cases where the two potential directing groups can promote epoxidation on opposite faces of the ring scaffold, evidence of competitive epoxidation pathways, promoted by hydrogen-bonding to either the in situ formed ammonium moiety or the hydroxyl group, was observed. In contrast to the relative directing group abilities already established for the six membered ring system (NHBn OH > NBn2), an N,N-dibenzylammonium moiety appeared more proficient than a hydroxyl group at directing the stereochemical course of the epoxidation reaction in a five- or seven-membered system. In the former case, this was rationalized by the drive to minimize torsional strain in the transition state being coupled with assistance from hydrogen bonding to the ammonium moiety. In the latter case, this was ascribed to the steric bulk of the ammonium moiety disfavoring conformations in which hydrogen bonding to the hydroxyl group results in direction of the epoxidation to the syn face. In cases where the two potential directing groups can promote epoxidation on the same face of the ring scaffold, an enhancement of epoxidation diastereoselectivity was not observed, while introduction of a second, allylic heteroatom to the substrate results in diminishment of the rate of epoxidation in all cases. Presumably, reduction of the nucleophilicity of the olefin by the second, inductively electron-withdrawing heteroatom is the dominant factor, and any assistance to the epoxidation reaction by the potential to form hydrogen-bonds to two directing groups rather than one is clearly unable to overwhelm it.
机译:环氧化的非对映心和速率(用Cl 3CO 2H处理,然后用Cl 3CO 2H处理)的一系列顺式和反式-4-氨基环烷-2-烯-1-醇衍生物(含有五个,六个和七元环) )已经被调查过。在所有情况下,两个潜在的指示组可以在环形支架的相对面上促进环氧化,观察到通过氢键与原位形成的铵部分或羟基促进的竞争性环氧化途径的证据。与已经为六个元环系统(NHBN OH> NBN2)建立的相对引导群体能力相反,N,N-二苄基铵部分比在引导环氧化反应的立体化学过程中的立体化学过程中的立体化学进程更容易得多五个或七元系统。在前一种情况下,这是通过驱动器合理化的,以最小化过渡状态中的扭转应变,与氢键与铵部分的氢键合联接。在后一种情况下,这是归因于铵的铵部分残疾的含铵部分的致残,其中氢键合与羟基导致环氧化对SYN面的方向。在两个潜在的指导基团可以在环形支架的同一面上促进环氧化的情况下,未观察到对环氧化非对映选择性的增强,同时引入底物的第二烯丙基杂原子导致所有内环氧化速率递减案件。据推测,通过第二,电感的电子抽出杂原子的烯烃的亲核性降低是主要因素,并且通过将氢键与两个引导基团形成氢键而不是一个的氢键对环氧化反应的任何辅助显然无法压倒它。

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