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Intramolecular 1,8-hydrogen atom transfer reactions in disaccharide systems containing furanose units

机译:含呋喃糖单元的二糖体系中的分子内1,8-氢原子转移反应

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A previously developed 1,8-hydrogen atom transfer (HAT) reaction promoted by 6-O-yl alkoxyl radicals between the two pyranose units in Hexp-(1→4)-Hexp disaccharides has been extended to other systems containing at least a furanose ring in their structures. In Penf-(1→3)-Penf (A) and Hexp-(1→3)-Penf (B) disaccharides, the 1,8-HAT reaction and concomitant cyclization to a 1,3,5-trioxocane ring are in competition with radical β-scission of the C4-C5 bond and formation of dehomologated products. The influence of the stereoelectronic β-oxygen effect on the β-scission and consequently on the 1,8-HAT reaction has been studied using the four possible isomeric d-furanoses. d-xylo- and d-lyxo-derivatives afforded preferentially 1,8-HAT products, whereas d-arabino- and d-ribo-derivatives gave exclusively direct β-scission of the alkoxyl radical. When the 6-O-yl radical is on a pyranose ring, as occurs in Penf-(1→4)-Hexp (C), it has been shown to provide the cyclized products exclusively.
机译:由Hexp-(1→4)-Hexp二糖中两个吡喃糖单元之间的6-O-基烷氧基自由基促进的先前开发的1,8-氢原子转移(HAT)反应已扩展至至少包含呋喃糖的其他系统在他们的结构中响起。在Penf-(1→3)-Penf(A)和Hexp-(1→3)-Penf(B)二糖中,1,8-HAT反应和伴随的环化成1,3,5-三氧杂环丁烷环与C4-C5键的自由基β断裂竞争并形成脱同源产物。使用四种可能的d-呋喃糖酶异构体,研究了立体电子β-氧效应对β断裂的影响,进而对1,8-HAT反应的影响。 d-木糖和d-木糖衍生物优先提供1,8-HAT产物,而d-阿拉伯糖基和d-核糖衍生物仅给出烷氧基的直接β断裂。当6-O-基团在吡喃糖环上时,如在Penf-(1→4)-Hexp(C)中所发生的那样,已证明仅提供环化产物。

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