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通过锆催化将未保护的醛糖转化为多羟烷基和 - 糖基呋喃。

Conversion of Unprotected Aldose Sugars to Polyhydroxyalkyl and -Glycosyl Furans via Zirconium Catalysis.

机构信息

School of Chemistry and Biochemistry, Georgia Institute of Technology, Atlanta, Georgia 30332, United States.

Renewable Bioproducts Institute, Georgia Institute of Technology, Atlanta, Georgia 30332, United States.

出版信息

J Org Chem. 2020 Dec 4;85(23):15337-15346. doi: 10.1021/acs.joc.0c02176. Epub 2020 Nov 23.

Abstract

An efficient, zirconium-catalyzed conversion of unprotected aldose sugars with acetylacetone to polyhydroxyalkyl furans or -glycosylfurans is reported. The furan products are formed in up to 93% yield using 5-10 mol % ZrCl. Pentoses are readily converted at room temperature, while hexoses and their oligosaccharides require mild heating (i.e., 50 °C). Efficient conversions of glycolaldehyde, glyceraldehyde, erythrose, a heptose, and glucosamine are also demonstrated. This approach outpaces each of the previous Lewis acid-catalyzed methods in at least one the following ways: (i) lower catalyst loadings; (ii) reduced reaction temperatures; (iii) shorter reaction times; (iv) equimolar substrate stoichiometry; (v) expanded sugar scope; (vi) higher selectivities; and (vii) the use of an Earth-abundant Zr catalyst.

摘要

本文报道了一种高效的、锆催化的、未保护的醛糖与乙酰丙酮的转化方法,可得到多羟烷基呋喃或 -糖基呋喃。使用 5-10 mol%的 ZrCl4,呋喃产物的收率高达 93%。戊糖可在室温下轻易转化,而己糖及其低聚糖则需要温和加热(即 50°C)。乙二醇醛、甘油醛、赤藓糖、庚糖和葡糖胺也可实现高效转化。该方法在至少一个方面优于之前的路易斯酸催化方法:(i)更低的催化剂负载量;(ii)更低的反应温度;(iii)更短的反应时间;(iv)等摩尔的底物计量比;(v)扩大了糖的范围;(vi)更高的选择性;以及(vii)使用了丰富的 Zr 催化剂。

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