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立体电子效应对含氟杂环化合物中J自旋-自旋耦合常数的影响。

Influence of stereoelectronic effects on the J spin-spin coupling constant in fluorinated heterocyclic compounds.

作者信息

Silla Josué M, Andrade Laize A F, Freitas Matheus P

机构信息

Department of Chemistry, Federal University of Lavras, 37200-000, Lavras, Brazil.

出版信息

Magn Reson Chem. 2019 Jul;57(7):373-379. doi: 10.1002/mrc.4854. Epub 2019 Mar 3.

Abstract

The Perlin effect and its analog for fluorinated compounds (the fluorine Perlin-like effect) manifest on one-bond C─H (C─F for the fluorine Perlin-like effect) spin-spin coupling constants (SSCCs) in six-membered rings. These effects can be useful to probe the stereochemistry (axial or equatorial) of the C─H and C─F bonds, respectively. The origin of these effects has been debatable in the literature as being due to hyperconjugative interactions, dipolar effects, and induced current density. Accordingly, a variety of model compounds has been used to probe such effects since the cyclohexanone carbonyl group and the endocyclic heteroatom lone pairs play different roles on the above-mentioned effects. Thus, the J SSCC in fluorinated lactams and lactones were theoretically studied to gain further insight on the nature of the fluorine Perlin-like effect. In addition, because the intramolecular α-effect has recently gained attention for its importance in the reactivity and stereoelectronic interactions in peroxide compounds, some fluorinated 1,2-dioxanes and 1,2-dithianes were studied to evaluate the role of the α-effect on the behavior of J SSCCs. Differently from fluorinated ketones and ethers, the fluorine Perlin-like effect in the amides and esters cannot be explained by hyperconjugative or dipolar interactions alone, because the resonance in these groups affect the J values. The O─O and S─S-containing systems exhibit a strong fluorine Perlin-like effect, but unlike the α-effect, this behavior cannot be explained neither by hyperconjugation nor by dipolar interactions alone; the spatial proximity of the C─F and O─O/S─S bonds is proposed to affect the magnitude of the J SSCC.

摘要

珀林效应及其在含氟化合物中的类似物(类氟珀林效应)体现在六元环中一键C─H(类氟珀林效应中为C─F)自旋-自旋耦合常数(SSCCs)上。这些效应分别有助于探究C─H键和C─F键的立体化学(轴向或赤道向)。在文献中,这些效应的起源一直存在争议,认为是由于超共轭相互作用、偶极效应和感应电流密度。因此,由于环己酮羰基和环内杂原子孤对在上述效应中起不同作用,已经使用了各种模型化合物来探究此类效应。因此,对含氟内酰胺和内酯中的J SSCC进行了理论研究,以进一步深入了解类氟珀林效应的本质。此外,由于分子内α效应最近因其在过氧化物化合物的反应性和立体电子相互作用中的重要性而受到关注,对一些含氟1,2-二氧六环和1,2-二噻烷进行了研究,以评估α效应在J SSCC行为中的作用。与含氟酮和醚不同,酰胺和酯中的类氟珀林效应不能仅用超共轭或偶极相互作用来解释,因为这些基团中的共振会影响J值。含O─O和S─S的体系表现出很强的类氟珀林效应,但与α效应不同,这种行为既不能用超共轭也不能仅用偶极相互作用来解释;有人提出C─F键与O─O/S─S键的空间接近度会影响J SSCC的大小。

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