Center of Basic Molecular Science, Department of Chemistry, Tsinghua University , Beijing 100084, China.
J Org Chem. 2016 Oct 7;81(19):9006-9011. doi: 10.1021/acs.joc.6b01642. Epub 2016 Sep 21.
The mechanism and origin of the unexpected chemoselectivity in fluorocyclization of o-styryl benzamide with a cyclic hypervalent fluoroiodane reagent were explored with DFT calculations. The calculations suggested an alternative mechanism that is broadly similar to, but also critically different from, the previously proposed mechanism for the formation of an unexpected structurally novel seven-membered 4-fluoro-1,3-benzoxazepine. The amide group of o-styryl benzamide was revealed to be crucial for activating the fluoroiodane reagent and facilitating C-F bond formation. In contrast to the popular electrophilic N-F reagent Selectfluor, the F atom in the fluoroiodane reagent is nucleophilic, and the I(III) atom is the most electrophilic site, thus inducing a completely different reactivity pattern. The insights reported here will be valuable for the further development of new reactions based on the hypervalent fluoroiodane reagent.
用 DFT 计算研究了 o-苯乙烯基苯甲酰胺与环状高价碘氟烷试剂的氟环化反应中意外的化学选择性的机制和起源。计算表明,一种替代机制与之前提出的形成结构新颖的七元 4-氟-1,3-苯并恶嗪的意外反应机制在很大程度上相似,但也有很大的不同。o-苯乙烯基苯甲酰胺的酰胺基团被揭示对激活氟碘烷试剂和促进 C-F 键形成至关重要。与流行的亲电 N-F 试剂 Selectfluor 不同,氟碘烷试剂中的 F 原子是亲核的,而 I(III)原子是最具亲电性的位点,因此诱导出完全不同的反应性模式。这里报道的见解将对进一步开发基于高价碘氟烷试剂的新反应具有重要价值。