首页> 外文期刊>The Journal of Organic Chemistry >Palladium-Controlled beta-Selective Glycosylation in the Absence of the C(2)-Ester Participatory Group
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Palladium-Controlled beta-Selective Glycosylation in the Absence of the C(2)-Ester Participatory Group

机译:缺乏C(2)-酯参与组的钯控制的β-选择性糖基化。

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摘要

The development of a new glycosylation method for the stereoselective synthesis of beta-glycosides in the absence of the traditional C(2)-ester neighboring group effect is described. This process relies on the ability of the cationic palladium catalyst, Pd(PhCN)(2)(OTf)(2) generated in situ from Pd(PhCN)(2)Cl-2 and AgOTf, to direct beta-selectivity. The new glycosylation reaction is highly beta-selective and proceeds under mild conditions with 1-2 mol % of catalyst loading. This beta-glycosylation method has been applied to a number of glucose donors with benzyl, allyl, and p-methoxybenzyl groups incorporated at the C(2)position as well as tribenzylated xylose and quinovose donors to prepare various disaccharides and trisaccharides with good to excellent beta-selectivity. Mechanistic studies suggest that the major operative pathway is likely to proceed via a seven-membered ring intermediate, wherein the cationic palladium complex coordinates to both the C(1)-imidate nitrogen and C(2)-oxygen of the trichloroacetimidate donor. Formation of this seven-membered ring intermediate directs the selectivity, leading to the formation of beta-glycosides.
机译:描述了在没有传统的C(2)-酯邻基效应的情况下立体选择性合成β-糖苷的新糖基化方法的发展。此过程取决于阳离子钯催化剂Pd(PhCN)(2)Cl-2和AgOTf原位生成的Pd(PhCN)(2)(OTf)(2)指导β选择性的能力。新的糖基化反应具有高度的β选择性,可在温和条件下以1-2 mol%的催化剂负载量进行。此β-糖基化方法已应用于具有C(2)位置掺入的苄基,烯丙基和对甲氧基苄基的许多葡萄糖供体,以及三苄基化的木糖和奎诺糖供体,以制备各种具有良好或优异的二糖和三糖β-选择性。机理研究表明,主要的操作途径可能是通过七元环中间体进行的,其中阳离子钯配合物与三氯乙酰基亚氨酸供体的C(1)-亚氨酸氮和C(2)-氧均配位。该七元环中间体的形成指导选择性,导致β-糖苷的形成。

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