Understanding the Cis-Trans Amide Bond Isomerization of N,N'-Diacylhydrazines to Develop Guidelines for A Priori Prediction of Their Most Stable Solution Conformers.

IF 3.3 2区 化学 Q1 CHEMISTRY, ORGANIC The Journal of Organic Chemistry Pub Date : 2024-08-02 Epub Date: 2023-01-26 DOI:10.1021/acs.joc.2c01891
Jugal Kishore Rai Deka, Biswajit Sahariah, Bani Kanta Sarma
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Abstract

N,N'-diacylhydrazines (R1CO-NR3-NR4-COR2) are a class of small molecules with a wide range of applications in chemistry and biology. They are structurally unique in the sense that their two amide groups are connected via a N-N single bond, and as a result, these molecules can exist in eight different isomeric forms. Four of these are amide isomers [trans-trans (t-t), trans-cis (t-c), cis-trans (c-t), and cis-cis (c-c)] arising from C-N bond restricted rotation. In addition, each of these amide isomers can exist in two different isomeric forms due to N-N bond restricted rotation, especially when R3 and R4 groups are relatively bigger. Herein, we have systematically investigated the conformations of 55 N,N'-diacylhydrazines using a combination of solution NMR spectroscopy, X-ray crystallography, and density functional theory calculations. Our data suggest that when the substituents R3 and R4 on the nitrogen atoms are both hydrogens. These molecules prefer twisted trans-trans (t-t) (>90%) geometries (H-N-C═O ∼ 180°), whereas the N-alkylated and N,N'-dialkylated molecules prefer twisted trans-cis (t-c) geometries. Herein, we have analyzed the stabilization of the various isomers of these molecules in light of steric and stereoelectronic effects. We provide a guideline to a priori predict the most stable conformers of the N,N'-diacylhydrazines just by examining their substituents (R1-R4).

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了解 N,N'-二乙酰肼的顺式-反式酰胺键异构化,为事先预测其最稳定的溶液构象提供指导。
N,N'-二乙酰肼(R1CO-NR3-NR4-COR2)是一类在化学和生物学中应用广泛的小分子。它们结构独特,两个酰胺基团通过一个 N-N 单键连接,因此这些分子可以以八种不同的异构体形式存在。其中四种酰胺异构体[反式-反式(t-t)、反式-顺式(t-c)、顺式-反式(c-t)和顺式-顺式(c-c)]产生于 C-N 键受限旋转。此外,由于 N-N 键旋转受限,这些酰胺异构体中的每一种都可以以两种不同的异构体形式存在,尤其是当 R3 和 R4 基团相对较大时。在此,我们结合溶液核磁共振光谱、X 射线晶体学和密度泛函理论计算,系统地研究了 55 种 N,N'-二酰肼的构象。我们的数据表明,当氮原子上的取代基 R3 和 R4 都是氢时,这些分子更倾向于扭转反式。这些分子偏好扭曲的反式-反式(t-t)(大于 90%)几何结构(H-N-C═O ∼ 180°),而 N-烷基化和 N,N'-二烷基化分子则偏好扭曲的反式-顺式(t-c)几何结构。在此,我们根据立体和立体电子效应分析了这些分子的各种异构体的稳定性。我们提供了一个指导原则,只需检查 N,N'-二乙酰肼的取代基(R1-R4),就能先验地预测其最稳定的构象。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
The Journal of Organic Chemistry
The Journal of Organic Chemistry 化学-有机化学
CiteScore
6.20
自引率
11.10%
发文量
1467
审稿时长
2 months
期刊介绍: The Journal of Organic Chemistry welcomes original contributions of fundamental research in all branches of the theory and practice of organic chemistry. In selecting manuscripts for publication, the editors place emphasis on the quality and novelty of the work, as well as the breadth of interest to the organic chemistry community.
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