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Heteroatom Substitution at Amide Nitrogen—Resonance Reduction and HERON Reactions of Anomeric Amides

机译:酰胺氮上的杂原子取代—异酰胺的共振降低和HERON反应

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摘要

This review describes how resonance in amides is greatly affected upon substitution at nitrogen by two electronegative atoms. Nitrogen becomes strongly pyramidal and resonance stabilisation, evaluated computationally, can be reduced to as little as 50% that of N,N-dimethylacetamide. However, this occurs without significant twisting about the amide bond, which is borne out both experimentally and theoretically. In certain configurations, reduced resonance and pronounced anomeric effects between heteroatom substituents are instrumental in driving the HERON (Heteroatom Rearrangement On Nitrogen) reaction, in which the more electronegative atom migrates from nitrogen to the carbonyl carbon in concert with heterolysis of the amide bond, to generate acyl derivatives and heteroatom-substituted nitrenes. In other cases the anomeric effect facilitates SN1 and SN2 reactivity at the amide nitrogen.
机译:这篇综述描述了在氮上被两个负电性原子取代后,酰胺的共振如何受到很大影响。氮变成强金字塔形,通过计算评估,共振稳定度可降低至N,N-二甲基乙酰胺的共振稳定度的50%。然而,这发生在酰胺键没有明显扭曲的情况下,这在实验和理论上都得到了证实。在某些构型中,杂原子取代基之间降低的共振和明显的异头作用有助于推动HERON(氮杂原子重排)反应,在该反应中,更多的负电性原子与酰胺键的杂合一起从氮迁移至羰基碳,生成酰基衍生物和杂原子取代的腈。在其他情况下,端基异构作用促进酰胺氮上的SN1和SN2反应性。

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