Dipartimento di Scienze e Tecnologie Chimiche, Università"Tor Vergata", Via Della Ricerca Scientifica, 1, Rome I-00133, Italy.
J Org Chem. 2022 Jun 3;87(11):7456-7463. doi: 10.1021/acs.joc.2c00955. Epub 2022 May 24.
A kinetic study of the hydrogen atom transfer (HAT) reactions from nitrogen-containing heterocycles (secondary and tertiary lactams, 2-imidazolidinones, 2-oxazolidinones, and succinimides) to the cumyloxyl radical has been carried out employing laser flash photolysis with ns time resolution. HAT occurs from the C-H bonds that are α to nitrogen, activated by hyperconjugative overlap with the N-C═O π system. In the lactam series, the second-order HAT rate constant () was observed to decrease by a factor of ∼4 going from the five- and six-membered ring derivatives to the eight-membered ones, a behavior that was rationalized on the basis of a reduced extent of hyperconjugative activation associated to the greater flexibility of the larger rings compared to the smaller ones. In the five-membered-ring substrate series, the values were observed to increase by >3 orders of magnitude on going from succinimide to 2-imidazolidinones, a behavior that was explained in terms of the divergent contribution of hyperconjugative activation and deactivating electronic effects determined by ring functionalities. The results are discussed in the framework of the development of HAT-based C-H bond functionalization procedures.
已采用纳秒时间分辨的激光闪光光解法对含氮杂环(仲和叔酰胺、2-咪唑烷酮、2-噁唑烷酮和琥珀酰亚胺)向芴氧基自由基的氢原子转移(HAT)反应进行了动力学研究。HAT 从α-氮的 C-H 键发生,由与 N-C═O π 系统的超共轭重叠激活。在酰胺系列中,观察到二级 HAT 速率常数()从五元和六元环衍生物降低到八元环衍生物,降低了约 4 倍,这一行为是基于与较小环相比,较大环的超共轭活化程度降低以及更大的灵活性来合理化的。在五元环底物系列中,观察到从琥珀酰亚胺到 2-咪唑烷酮,值增加了超过 3 个数量级,这一行为可以用超共轭活化和由环官能团决定的失活电子效应的发散贡献来解释。结果在基于 HAT 的 C-H 键官能化程序的发展框架内进行了讨论。