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