Song Jinliang, Li Yanan, Xue Zhimin
School of Chemical Engineering and Light Industry, Guangdong University of Technology, Guangzhou 510006, China.
College of Environmental Science and Engineering, Taiyuan University of Technology, Taiyuan 030024, China.
iScience. 2022 Aug 30;25(10):105039. doi: 10.1016/j.isci.2022.105039. eCollection 2022 Oct 21.
Utilization of naturally occurring resources to construct functional catalytic materials is significantly important, and facile and environmental-benign strategies are highly desired to afford the materials having a specific structure and good catalytic activity. Herein, we reported an innovative deep eutectic solvent (DES)-assisted strategy to synthesize zirconium phytate with a thin nanosheet structure (denoted as Zr-Phy-) using plant-originated phytic acid (PhyA) as the renewable building block. This strategy was eco-friendly and adjustable owing to the designability of DESs. The Zr-Phy- as an acidic catalyst showed high activity on two important biomass transformations, , dehydration of carbohydrates and Meerwein-Ponndorf-Verley reduction of ethyl levulinate. Interestingly, Zr-Phy- showed higher catalytic performance than the zirconium phytates prepared in ethylene glycol and -dimethylformamide, confirming the advantage of DESs for preparing functional materials. Notably, the unique feature of this proposed strategy is that renewable catalysts are prepared in an environmental-benign solvent for efficiently catalyzing biomass transformation.
利用天然资源构建功能性催化材料具有重要意义,因此迫切需要简便且环境友好的策略来制备具有特定结构和良好催化活性的材料。在此,我们报道了一种创新的深共熔溶剂(DES)辅助策略,以植物源植酸(PhyA)作为可再生构建单元,合成具有薄纳米片结构的植酸锆(记为Zr-Phy-)。由于DES的可设计性,该策略具有环境友好且可调节的特点。Zr-Phy-作为酸性催化剂,在碳水化合物脱水和乙酰丙酸乙酯的Meerwein-Ponndorf-Verley还原这两种重要的生物质转化反应中表现出高活性。有趣的是,Zr-Phy-比在乙二醇和N,N-二甲基甲酰胺中制备的植酸锆具有更高的催化性能,证实了DES在制备功能材料方面的优势。值得注意的是,该策略的独特之处在于在环境友好的溶剂中制备可再生催化剂,以有效催化生物质转化。