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Reliable determination of amidicity in acyclic amides and lactams

机译:可靠测定无环酰胺和内酰胺中的亲和力

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Two independent computational methods have been used for determination of amide resonance stabilization and amidicities relative to N,N-dimethylacetamide for a wide range of acyclic and cyclic amides. The first method utilizes carbonyl substitution nitrogen atom replacement (COSNAR). The second, new approach involves determination of the difference in amide resonance between N,N-dimethylacetamide and the target amide using an isodesmic trans-amidation process and is calibrated relative to 1-aza-2-adamantanone with zero amidicity and N,N-dimethylacetamide with 100% amidicity. Results indicate excellent coherence between the methods, which must be regarded as more reliable than a recently reported approach to amidicities based upon enthalpies of hydrogenation. Data for acyclic planar and twisted amides are predictable on the basis of the degrees of pyramidalization at nitrogen and twisting about the C-N bonds. Monocyclic lactams are predicted to have amidicities at least as high as N,N-dimethylacetamide, and the β-lactam system is planar with greater amide resonance than that of N,N-dimethylacetamide. Bicyclic penam/em and cepham/em scaffolds lose some amidicity in line with the degree of strain-induced pyramidalization at the bridgehead nitrogen and twist about the amide bond, but the most puckered penem system still retains substantial amidicity equivalent to 73% that of N,N-dimethylacetamide.
机译:对于广泛的无环和环状酰胺,已使用两种独立的计算方法确定相对于N,N-二甲基乙酰胺的酰胺共振稳定度和酰胺度。第一种方法利用羰基取代氮原子置换(COSNAR)。第二种新方法涉及使用等电代酰胺化过程确定N,N-二甲基乙酰胺与目标酰胺之间酰胺共振的差异,并相对于酰胺化为零且N,N-的1-氮杂-2-金刚烷酮进行校准具有100%亲和力的二甲基乙酰胺。结果表明这两种方法之间具有出色的连贯性,这必须比最近报道的基于氢化焓的方法更可靠。无环平面酰胺和扭曲酰胺的数据可根据氮的锥体化程度和绕C-N键的扭曲程度进行预测。预测单环内酰胺具有至少与N,N-二甲基乙酰胺一样高的酰胺,并且β-内酰胺体系是平面的,其酰胺共振大于N,N-二甲基乙酰胺。双环penam / em和cepham / em支架失去一些亲和力,这与桥头氮处的应变诱导的锥体化程度和酰胺键的扭转程度有关,但折叠最深的Penem系统仍然保留相当的亲和力,相当于N的73% ,N-二甲基乙酰胺。

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