Graduate School of Biomedical Sciences, Nagasaki University, 1-14 Bunkyo-machi, Nagasaki 852-8521, Japan.
Molecules. 2022 Dec 18;27(24):9025. doi: 10.3390/molecules27249025.
Glycerol is the main side product in the biodiesel manufacturing process, and the development of glycerol valorization methods would indirectly contribute the sustainable biodiesel production and decarbonization. Transformation of glycerol to optically active C3 units would be one of the attractive routes for glycerol valorization. We herein present the asymmetric sulfonylative desymmetrization of glycerol by using a CuCN/(,)-PhBOX catalyst system to provide an optically active monosulfonylated glycerol in high efficiency. A high degree of enantioselectivity was achieved with a commercially available chiral ligand and an inexpensive carbonate base. The optically active monosulfonylated glycerol was successfully transformed into a C3 unit attached with differentially protected three hydroxy moieties. In addition, the synthetic utility of the present reaction was also demonstrated by the transformation of the monosulfonylated glycerol into an optically active synthetic ceramide, sphingolipid E.
甘油是生物柴油制造过程中的主要副产物,开发甘油增值方法将间接促进可持续的生物柴油生产和脱碳。将甘油转化为手性 C3 单元将是甘油增值的有吸引力的途径之一。我们在此通过使用 CuCN/(,)-PhBOX 催化剂体系对甘油进行不对称磺酰化去对称化,以高效率提供手性单磺化甘油。使用市售的手性配体和廉价的碳酸盐碱实现了高度的对映选择性。手性单磺化甘油成功转化为带有差异保护的三个羟基的 C3 单元。此外,通过将单磺化甘油转化为手性合成神经酰胺、神经鞘脂 E,还证明了本反应的合成实用性。