探索和重新评估从单核和多核芳香性化物中衍生出的2-iminoaldoses中的反向无分子效应
Esther M S Pérez1, Esther Matamoros1,2,3, Pedro Cintas1
1Department of Organic and Inorganic Chemistry, Faculty of Sciences, and IACYS-Green Chemistry and Sustainable Development Unit, University of Extremadura, 06006 Badajoz, Spain.
Molecules (Basel, Switzerland)
|September 14, 2024
概括
来自2-aminoaldoses的希夫基显示反向异构效应 (RAE),在此情况下,赤道异构物是最稳定的. 这是由于分子内键抑制了轴向异构体中的外异构体效应而发生的.
科学领域:
- 碳水化合物化学 碳水化合物化学
- 有机化学 有机化学
- 立体化学是一种立体化学.
背景情况:
- 来自2-氨基基的希夫基具有独特的结构性质.
- 异构效应显著影响碳水化合物衍生物的立体化学结果.
研究的目的:
- 为了研究2-aminoaldoses的Schiff基中逆异构效应 (RAE) 的结构基础.
- 为了确定替代剂对RAE的影响和外异构效应.
主要方法:
- 从各种化物 (化,化,化,化,化和化) 和2-aminoaldoses中衍生出的希夫基的计算分析.
- 分析分子内键及其对无分子平衡的影响.
- 对不同希夫基 tautomers 和质子化状态的外异构效应的评估.
主要成果:
- 由于分子内键,赤道异构体 (β) 是因子异构体的突变旋转平衡中最稳定和最丰富的.
- 这种异构氧和异构之间的键抑制了轴向异构 (α) 中的外异构效应.
- 质子化或酶胺形成恢复了外异体效应,有利于轴性α-异体.
结论:
- 在这些希夫基中,反向无分子效应是一种强大的立体电子现象.
- 在各种芳香替代剂中,RAE的大小是一致的,无论它们的大小或疏水性如何.
- 了解这种效应对于预测溶液中希夫基衍生物的立体化学是至关重要的.
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