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定量研究哌啶模型系统中常见碳水化合物保护基的电子效应。

Quantifying electronic effects of common carbohydrate protecting groups in a piperidine model system.

机构信息

Department of Chemistry, University of Copenhagen, DK-2100 Copenhagen Ø, Denmark.

出版信息

Chemistry. 2010 Dec 17;16(47):13982-94. doi: 10.1002/chem.201002313.

Abstract

A study of the substituent effects of protecting groups in hydroxypiperidines was carried out and compared with the electronic effects in glycosylation chemistry. 1-Deoxynojirimycin, the aza-sugar analogue of 1-deoxy-D-glucose, was used as a carbohydrate model, and protected with the most common carbohydrate protecting groups. The different stabilization of positive charge on the ring heteroatom was determined by pK(a) measurements. The protecting groups could be ranked in the following way after their destabilization of the piperidinium ion: benzoyl ≥ acetyl ≫ 4,6-O-benzylidine >benzyl ≈ methyl > H > 3,6-anhydro > tert-butyldimethylsilyl. The observed effects of having protecting groups with different electronic characteristics were found to be in agreement with the "armed-disarmed" concept. Comparison of the pK(a) of benzylated and benzoylated epimers of 3-hydroxy-6-hydroxymethyl piperidines showed increased stabilization of the piperidinium ion in the axial epimer. The difference between axial and equatorial epimers was larger in the benzylated than in the benzoylated piperidines.

摘要

对羟基哌啶保护基的取代效应进行了研究,并与糖苷化学中的电子效应进行了比较。1-去氧野尻霉素,1-去氧-D-葡萄糖的氮杂糖类似物,被用作碳水化合物模型,并被最常见的碳水化合物保护基保护。通过 pK(a)测量确定了环杂原子上正电荷的不同稳定化程度。根据对哌啶鎓离子的去稳定化作用,保护基可以按以下顺序排列:苯甲酰基≥乙酰基>4,6-O-亚苄基>苄基≈甲基>氢>3,6-脱水基>叔丁基二甲基甲硅烷基。具有不同电子特性的保护基的观察到的效应与“武装-解除武装”概念一致。比较了 3-羟基-6-羟甲基哌啶的苯甲酰基和苯甲酰基差向异构体的 pK(a),发现轴向差向异构体中哌啶鎓离子的稳定性增加。在苯甲酰基化的哌啶中,轴向差向异构体与赤道差向异构体之间的差异大于在苯甲酰化的哌啶中。

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