Li Xiangbiao, Cong Hang, Zhao Wenfeng, Yang Song, Li Hu
School of Chemistry and Chemical Engineering, Guizhou University, Guiyang, 550025, China.
State Key Laboratory of Green Pesticide, Key Laboratory of Green Pesticide and Agricultural Bioengineering of Ministry of Education, State-Local Joint Engineering Lab for Comprehensive Utilization of Biomass, Center for R&D of Fine Chemicals, Guizhou University, Guiyang, 550025, China.
ChemSusChem. 2025 Jan 14;18(2):e202401416. doi: 10.1002/cssc.202401416. Epub 2024 Oct 23.
The synthesis of biofuel γ-valerolactone (GVL) from accessible biomass is an attractive and challenging goal. Here, we report an efficient, one-pot, and mild strategy for the efficient production of GVL from various biomass saccharides without using any homogeneous acid as a co-catalyst and molecular hydrogen as a hydrogen donor. A versatile porous tin-containing material (Sn(M)-S) was designed as an individual heterogeneous catalyst. As high as 68.4 % yield of GVL form glucose was achieved in the presence of ammonia borane as a solid hydrogen donor under mild conditions, with GVL yields of 76.2 %, 68.9 %, 62.5 %, and 52.2 % being obtained from fructose, sucrose, cellobiose, and cellulose, respectively. The synergistic effect of Sn and sulfonic acid group in Sn(M)-S not only provides appropriate Lewis acid sites to promote the isomerization of glucose into fructose but also affords abundant Brønsted sites for the following conversion steps. Moreover, Sn(M)-S(1) showed good stability and reusability during consecutive recycles.
由可获取的生物质合成生物燃料γ-戊内酯(GVL)是一个具有吸引力且颇具挑战性的目标。在此,我们报道了一种高效、一锅法且温和的策略,可在不使用任何均相酸作为共催化剂以及不使用分子氢作为氢供体的情况下,由各种生物质糖类高效生产GVL。一种通用的含锡多孔材料(Sn(M)-S)被设计为单一的多相催化剂。在温和条件下,以氨硼烷作为固体氢供体时,由葡萄糖生成GVL的产率高达68.4%,由果糖、蔗糖、纤维二糖和纤维素生成GVL的产率分别为76.2%、68.9%、62.5%和52.2%。Sn(M)-S中Sn和磺酸基团的协同作用不仅提供了合适的路易斯酸位点以促进葡萄糖异构化为果糖,还为后续的转化步骤提供了丰富的布朗斯特酸位点。此外,Sn(M)-S(1)在连续循环过程中表现出良好的稳定性和可重复使用性。