Engineering Research Centre of Large Scale Reactor Engineering and Technology of ministry of Education, East China University of Science and Technology, Shanghai, 200237, P. R. China.
Green Chemistry Centre of Excellence, University of York, York, YO105DD, UK.
ChemSusChem. 2021 Jan 7;14(1):456-466. doi: 10.1002/cssc.202001525. Epub 2020 Sep 24.
A newly designed N and P co-doped carbon material has been developed to catalyze the conversion of 5-hydroxymethylfurfural (HMF) to 2,5-furandialdehyde (DFF) with unprecedented yield and selectivity and demonstrating a synergistic effect between the heteroatoms. The desired catalyst was first synthesized via a pyrolysis method using urea as the nitrogen and carbon source followed by calcination with phytic acid solution as the phosphorus source. The mass ratio of phytic acid to C N and calcination temperature were varied to investigate their effects on catalyst synthesis and microstructure as well as subsequent catalytic activity in simple reaction systems under oxygen. The effect of reaction conditions on the final HMF conversion and DFF selectivity were also investigated systematically. The P-C-N-5-800 catalyst obtained with the optimized annealing temperature of 800 °C and mass ratio of phytic acid/C N of 5 enabled a 99.5 % DFF yield at 120 °C for 9 h under 10 bar oxygen pressure, being the highest among any reported metal-free heterogeneous catalyst to date. The excellent performance of P-C-N-5-800 could be ascribed to the synergy between N and P heteroatoms as well as the high content of graphitic-N and the P-C species within the carbon structure. Reusability studies show that the P-C-N-5-800 catalyst was stable and reusable without deactivation. These results strongly suggest that P-C-N-5-800 is a promising catalyst for large-scale production of DFF in a green manner.
一种新设计的 N 和 P 共掺杂碳材料已被开发出来,用于催化 5-羟甲基糠醛 (HMF) 转化为 2,5-糠醛 (DFF),具有前所未有的产率和选择性,并表现出杂原子之间的协同效应。所需的催化剂首先通过使用尿素作为氮和碳源的热解方法合成,然后用植酸溶液作为磷源进行煅烧。改变植酸与 C N 的质量比和煅烧温度,以研究它们对催化剂合成和微观结构以及随后在氧气存在下的简单反应体系中的催化活性的影响。还系统研究了反应条件对最终 HMF 转化率和 DFF 选择性的影响。在优化的 800°C 退火温度和植酸/C N 的质量比为 5 的条件下获得的 P-C-N-5-800 催化剂,在 120°C 下在 10 巴氧气压力下反应 9 小时,可获得 99.5%的 DFF 产率,是迄今为止报道的任何无金属多相催化剂中最高的。P-C-N-5-800 的优异性能可归因于 N 和 P 杂原子之间的协同作用以及碳结构中石墨-N 和 P-C 物质的高含量。可重复使用性研究表明,P-C-N-5-800 催化剂稳定且可重复使用而不会失活。这些结果强烈表明,P-C-N-5-800 是一种很有前途的用于以绿色方式大规模生产 DFF 的催化剂。