Wesner Anne, Papajewski Max P, Schidowski Leon, Ruhmlieb Charlotte, Poller Maximilian J, Albert Jakob
Institute of Technical and Macromolecular Chemistry, University of Hamburg, Bundesstraße 45, 20146 Hamburg, Germany.
Institute of Physical Chemistry, University of Hamburg, Grindelallee 117, 20146 Hamburg, Germany.
Dalton Trans. 2024 Aug 20;53(33):14065-14076. doi: 10.1039/d4dt01336k.
Polyoxometalates (POMs), in particular the Keggin-type HPA-5 (HPVMoO) are widely established as effective catalysts for acid- and redox-catalyzed reactions. Yet, they are mainly used as homogeneous catalysts, which poses challenges regarding catalyst separation. This study explores the synthesis of supported HPA-5, and its application as a heterogeneous catalyst for biomass conversion, focusing on activated carbons with diverse chemical and physical properties as support materials. Characterization of these carbons gives insights into the influence of surface area, oxygen content, and acidity on HPA adsorption and stability. Activated carbon CW20, was found to be the best support due to its high vanadium loading and effective preservation of the HPA-5 structure. It underwent various pre- and post-treatments, and the obtained supported catalysts were evaluated for their catalytic performance in converting glucose under both oxidative (OxFA process) and inert (Retro-Aldol condensation) conditions. Notably, HPA-5 supported on CW20 emerged as an exceptional catalyst for the retro-aldol condensation of glucose to lactic acid, achieving a selectivity of 15% and a conversion rate of 71%, with only minimal vanadium leaching.
多金属氧酸盐(POMs),特别是Keggin型HPA - 5(HPVMoO),已被广泛确立为酸催化和氧化还原催化反应的有效催化剂。然而,它们主要用作均相催化剂,这在催化剂分离方面带来了挑战。本研究探索了负载型HPA - 5的合成及其作为生物质转化多相催化剂的应用,重点关注具有不同化学和物理性质的活性炭作为载体材料。对这些碳的表征揭示了表面积、氧含量和酸度对HPA吸附和稳定性的影响。由于其高钒负载量和对HPA - 5结构的有效保留,活性炭CW20被发现是最佳载体。它经过了各种预处理和后处理,并对所得负载型催化剂在氧化(OxFA过程)和惰性(逆羟醛缩合)条件下转化葡萄糖的催化性能进行了评估。值得注意的是,负载在CW20上的HPA - 5成为将葡萄糖逆羟醛缩合为乳酸的优异催化剂,选择性达到15%,转化率达到71%,钒浸出量极少。