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N-aryl anions: Half way between amides and carbanions

机译:N-芳基阴离子:介于酰胺和碳负离子之间

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A 'carbanion' can coordinate to a metal like an 'amide' if there is a nitrogen atom present to withdraw electron density from the formally negatively charged carbon center. On the other hand, shifting the negative charge from the amido nitrogen atom to the carbon substituent should convert an 'amidic' into a 'carbanionic' coordination behavior. This seems feasible with various substituents at the aromatic ring in a primary amide. This paper is concerned with the influence of aromatic substitution, as well as with the nature of the metal ion on the coordination mode of an amide ligand. Discussed are the parent lithium anilide [(thf)(2)LiNH(C6H5)](2) (1), the pentafluorinated lithium anilide [(thf)(2)LiNH(C6F5)](2) (2) and the lithium amino benzonitrile [(thf)(2)LiNH((C6H4CN)-C-p)](2) (3). All amide ligands coordinate the lithium cation exclusively with their amido nitrogen atom. In the dimeric structure of I the atom can be regarded to be sp(2)-hybridized. Fluorine substitution of the ring results in a slightly more pronounced coupling of the negative charge to the aromatic ring. A para-nitrile group further enhances quinoidal perturbation of the C-6-perimeter from six-fold symmetry. Consequently, the ipso- and ortho-carbon atoms of the ring are partially negative charged. Those carbon atoms are only attractive for the soft rubidium cation in an aza allylic coordination in [(thf)(2)RbNH(C6H4PCN)](n) (4) but not to the hard lithium cation.
机译:如果存在一个氮原子,可以从形式上带负电荷的碳中心撤离电子密度,那么“碳阴离子”可以与诸如“酰胺”之类的金属配位。另一方面,将负电荷从酰胺氮原子转移到碳取代基应将“酰胺”转化为“碳阴离子”配位行为。对于伯酰胺中芳环上的各种取代基,这似乎是可行的。本文涉及芳族取代的影响,以及金属离子的性质对酰胺配体配位模式的影响。讨论了母体苯胺锂[[thf](2)LiNH(C6H5)](2)(1),五氟化苯胺锂[[thf](2)LiNH(C6F5)](2)(2)和锂氨基苄腈[(thf)(2)LiNH((C6H4CN)-Cp)](2)(3)。所有酰胺配体仅将锂阳离子与其酰胺氮原子配位。在I的二聚结构中,原子可以视为sp(2)杂化的。环的氟取代导致负电荷与芳族环的耦合稍显着。副腈基团从六重对称性进一步增强了C-6周边的奎因特扰动。因此,该环的异丙碳原子和邻碳原子部分带负电荷。这些碳原子仅对[(thf)(2)RbNH(C6H4PCN)](n)(n)(4)中的氮杂烯丙基配位体的软attractive阳离子具有吸引力,而对硬锂阳离子则不具有吸引力。

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