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FIRST SYNTHESIS OF CELLOOCTAOSE BY A CONVERGENT SYNTHETIC METHOD

机译:聚合合成法首次合成纤维素

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The first chemical synthesis of cellooctaose by a convergent synthetic method is described. A challenging glycosylation between cellotetraosyl donor 5 and acceptor 7 proceeded in a one-step reaction using a high-vacuum system for anhydrous glycosylation and minimizing imidate side reactions such as hydrolysis and glycosyl fluoride formation. Pivaloyl, allyl, and benzyl protecting groups of cellooctaose derivative 8 were completely removed with SeO2-AcOH, NaOMe-MeOH, and H-2/Pd(OH)(2)-C, respectively. The acetylation after each deprotection step finally led to cellooctaose hexacosaacetate (20), which is useful for purification and structural identification. Finally, the acetyl derivative 20 was deacetylated with 1,8-diazabicyclo[5.4.0.]undec-7-ene (DBU) in 20% MeOH-CH2Cl2 to give pure cellooctaose (21). The analogous synthetic route to the present convergent synthetic design of cellooctaose may be a most promising one that enables us to synthesize cellulose with a defined degree of polymerization (dp). (C) 1996 Elsevier Science Ltd. [References: 24]
机译:描述了通过收敛合成方法的纤维八糖的第一化学合成。纤维四糖基供体5和受体7之间具有挑战性的糖基化反应是一步一步进行的,该反应使用高真空系统进行无水糖基化反应,并最大限度地减少了亚氨酸酯的副反应,如水解和糖基氟化物的形成。分别用SeO2-AcOH,NaOMe-MeOH和H-2 / Pd(OH)(2)-C完全除去纤维八糖衍生物8的新戊酰基,烯丙基和苄基保护基。每个脱保护步骤后的乙酰化作用最终产生了纤维八糖六乙酸酯(20),可用于纯化和结构鉴定。最后,用在20%MeOH-CH2Cl2中的1,8-二氮杂双环[5.4.0。]十一碳-7-烯(DBU)将乙酰基衍生物20脱乙酰基,得到纯纤维八糖(21)。目前纤维八糖聚合设计的类似合成路线可能是最有前途的路线,它使我们能够合成具有确定聚合度(dp)的纤维素。 (C)1996 Elsevier Science Ltd. [参考:24]

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