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1,8-二取代萘中紧密的酰胺NH···F氢键相互作用

Close Amide NH···F Hydrogen Bonding Interactions in 1,8-Disubstituted Naphthalenes.

作者信息

Kazim Muhammad, Siegler Maxime A, Lectka Thomas

机构信息

Department of Chemistry, Johns Hopkins University, 3400 North Charles Street, Baltimore, Maryland 21218, United States.

出版信息

J Org Chem. 2020 May 1;85(9):6195-6200. doi: 10.1021/acs.joc.0c00553. Epub 2020 Apr 19.

Abstract

In this note, we present a series of -(8-fluoronaphthalen-1-yl)benzamide derivatives designed to maximize amide-NH···F hydrogen bond interactions therein. A combination of IR and NMR spectroscopy indicates a linear correlation between the high energy shift in NH stretching frequency and the electron withdrawing nature of the substituent, consistent with the trend predicted by DFT calculations. Additionally, a limiting case of hydrogen bonding is observed when the benzamide derivatives are replaced with trifluoroacetamide, causing an additional red shift of 44 cm in the NH stretching frequency. Most importantly, H-F coupling constants in this series are among the largest measured for amide-NH···F interactions. X-ray crystallography reveals face-to-face alignment of naphthalene rings in these derivatives resulting in part from the NH···F hydrogen bonds. This motif also dictates the formation of sheets composed of stacked naphthalene rings in the crystal structure as opposed to unfluorinated analogues wherein NH···OC hydrogen-bonding interactions force benzamide and naphthalene rings to engage in T-shaped π-π interactions instead. Additionally, the NH proton in the trifluoroacetamide derivative engages in extended H-bond interactions in its crystal structure.

摘要

在本论文中,我们展示了一系列 -(8-氟萘-1-基)苯甲酰胺衍生物,其设计目的是使其中的酰胺-NH···F氢键相互作用最大化。红外光谱和核磁共振光谱的结合表明,NH伸缩频率的高能位移与取代基的吸电子性质之间存在线性相关性,这与密度泛函理论计算预测的趋势一致。此外,当苯甲酰胺衍生物被三氟乙酰胺取代时,观察到氢键的一种极限情况,导致NH伸缩频率额外出现44 cm的红移。最重要的是,该系列中的H-F耦合常数是酰胺-NH···F相互作用中测量到的最大常数之一。X射线晶体学揭示了这些衍生物中萘环的面对面排列,部分原因是NH···F氢键。与未氟化的类似物相反,这种结构单元还决定了晶体结构中由堆叠萘环组成的片层的形成,在未氟化类似物中,NH···OC氢键相互作用迫使苯甲酰胺和萘环参与T形π-π相互作用。此外,三氟乙酰胺衍生物中的NH质子在其晶体结构中参与扩展的氢键相互作用。

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