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A Model Study on the Carbon-Halogen Activation in Perhalonated Arenes with Isonitrile Under Photoirradiation

机译:一项关于perhonated领域碳释放激活的模型研究

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The mechanisms of the photochemical carbon-halogen bond activation reactions were investigated theoretically using a model system of hexahalobenzene C6X6 (X=F, Cl, and Br) and phenyl isonitrile (PhN=C:), with the M06-2X method and the 6–311G(d) basis set. The theoretical findings suggest the photoactivation mechanism should proceed as follows: Rea-X-S0 + hn ! FC-X-T1 -> PhNC-T1 + C6X6 -> Int-X-T1 -> TS-X-T1 -> T1/S0-X -> Pro-X-S0. The present theoretical evidence confirms the reported results by Studer and co-workers that using UV irradiation, a simple and efficient transition-metal-free C-F activation in various perfluoroarenes with aryl and alkyl isonitriles obtain imidoyl fluorides. Nevertheless, due to the highly vertical Frank-Condon excitation energy, our theoretical study demonstrates N-heterocyclic carbene cannot undergo the C-F bond activation reaction with hexafluorobenzene under photoirradiation, which closely agrees with the available experimental observations. The present theoretical research reveals the spin crossover processes, which lead to a concerted reaction pathway, play a key role in the regioselecitivities of the final photoinsertion products.
机译:理论上研究了光化学碳释染色反应的机制,该反应使用六盐苯基苯C6X6(X = F,Cl和Br)和苯基异硝基(PHN = C :),带有M06-2X方法和6个方法和6 –311G(d)基集。理论发现表明光激活机制应如下:Rea-X-S0 + Hn! FC-X-T1-> PHNC-T1 + C6X6-> INT-X-T1-> TS-X-T1-> T1/S0-X-> Pro-X-S0。目前的理论证据证​​实了Studer和同事报告的结果,即使用紫外线辐射,这是一种简单有效的过渡金属的C-F激活,在各种芳基和烷基异义烯中获得咪二酰氟化物。然而,由于高度垂直的Frank-Condon激发能量,我们的理论研究表明,在光辐射下,N-杂环碳烯不能与六氟苯进行C-F键激活反应,这与可用的实验观察非常吻合。目前的理论研究揭示了导致一致反应途径的旋转跨界过程,它在最终摄影产物的区域性重点中起着关键作用。

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