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立体电子取代基效应

Stereoelectronic substituent effects.

作者信息

Jensen Henrik Helligsø, Bols Mikael

机构信息

Department of Chemistry, University of Aarhus, DK-8000 Aarhus C, Denmark.

出版信息

Acc Chem Res. 2006 Apr;39(4):259-65. doi: 10.1021/ar050189p.

Abstract

An investigation was carried out on the influence of the stereochemistry of substituents, particularly hydroxyl groups, on their electronic effects in piperidines, carbohydrates (pyranosides), and related compounds. Polar groups, such as OH, OR, and F, were found in the 3 and 4 position to be much more electron-withdrawing when positioned equatorially rather than axially. In contrast, little difference in electronic effects was observed from apolar groups as a result of epimerization. These observations were believed to be caused by differences in charge-dipole interactions and were used to explain why stereoisomeric glycosides hydrolyze with different rates. The conformational changes of hydroxylated piperidines and related compounds as a function of pH were likewise explained from the different substituent effects of axial and equatorial OH groups.

摘要

开展了一项关于取代基的立体化学,特别是羟基的立体化学,对其在哌啶、碳水化合物(吡喃糖苷)及相关化合物中的电子效应影响的研究。发现极性基团,如OH、OR和F,处于3位和4位时,赤道向排列比轴向排列的吸电子能力要强得多。相比之下,差向异构化导致非极性基团的电子效应几乎没有差异。这些观察结果被认为是由电荷 - 偶极相互作用的差异引起的,并被用于解释为什么立体异构糖苷以不同速率水解。同样,羟基化哌啶及相关化合物随pH值变化的构象变化也可从轴向和赤道向OH基团的不同取代基效应来解释。

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