J Am Chem Soc. 2021 Sep 15;143(36):14657-14666. doi: 10.1021/jacs.1c05854. Epub 2021 Aug 31.
The unusual reactivity of twisted amides has long been associated with the degree of amide distortion, though classical bridged bicyclic amides offer limited methods to further modify these parameters. Here, we report that the geometry and reactivity of a single twisted amide scaffold can be significantly modulated through remote substituent effects. Guided by calculated ground state geometries, a library of twisted amide derivatives was efficiently prepared through a divergent synthetic strategy. Kinetic and mechanistic investigations of these amides in the alkylation/halide-rebound ring-opening reaction with alkyl halides show a strong positive correlation between the electron donating ability of the substituent and distortion of the amide bond, leading to rates of nucleophilic substitution spanning nearly 2 orders of magnitude. The rate limiting step of the cascade sequence is found to be dependent on the nature of the substituent, and additional studies highlight the role of solvent polarity and halide ion on reaction pathway and efficiency.
扭曲酰胺的异常反应性长期以来一直与酰胺变形程度有关,尽管经典的桥接双环酰胺提供了有限的方法来进一步修饰这些参数。在这里,我们报告说,单个扭曲酰胺支架的几何形状和反应性可以通过远程取代基效应显著调节。在计算得到的基态几何形状的指导下,通过发散的合成策略高效制备了扭曲酰胺衍生物库。对这些酰胺与烷基卤化物在烷基化/卤化物-回弹开环反应中的动力学和机理研究表明,取代基的给电子能力与酰胺键的变形之间存在很强的正相关性,导致亲核取代速率跨越近 2 个数量级。发现级联序列的速率限制步骤取决于取代基的性质,并且进一步的研究强调了溶剂极性和卤化物离子对反应途径和效率的作用。