Herbig Bettina, Cermjani Egzon, Hanselmann Doris, Schmitt Angelika, Deckers Christoph, Rehm Thomas H, Mandel Karl, Wintzheimer Susanne
Fraunhofer-Institute for Silicate Research ISC, Neunerplatz 2, D97082 Würzburg, Germany.
Fraunhofer-Institut für Mikrotechnik und Mikrosysteme IMM, Carl-Zeiss-Str. 18-20, D55129 Mainz, Germany.
Chem Bio Eng. 2025 Jan 16;2(3):199-209. doi: 10.1021/cbe.4c00154. eCollection 2025 Mar 27.
The development of hybrid catalysts for cascade reactions that demonstrate high efficiency and longevity strongly relies on the precise arrangement of the individual components within such a material. This guarantees both their proximity for enhanced interaction and, at the same time, sufficient separation avoiding mutual harm. Before the acutal design of a usually very complex hybrid catalyst, it is essential to study and understand the impact of structural characteristics on catalytic activities of each catalytically active constituent separately. This study thus focuses on a comprehensive structure-activity analysis of the component within a highly customizable TiO-SiO material, which produces HO photocatalytically. The tailorable design of the hybrid material is achieved through the utilization of the spray-drying process. The HO productivity of the obtained so-called TiO-SiO supraparticles is demonstrated in both a batch and a flow reactor, marking a crucial step toward their future application as hybrid catalysts in photoassisted cascade reactions.
用于级联反应的高效且长效的混合催化剂的开发,很大程度上依赖于这种材料中各个组分的精确排列。这既能保证它们彼此靠近以增强相互作用,同时又能保证有足够的分离以避免相互损害。在实际设计通常非常复杂的混合催化剂之前,分别研究和了解结构特征对每种催化活性成分催化活性的影响至关重要。因此,本研究聚焦于对一种高度可定制的TiO-SiO材料中各组分进行全面的结构-活性分析,该材料可光催化产生羟基自由基(HO)。通过喷雾干燥工艺实现了混合材料的可定制设计。所制备的所谓TiO-SiO超粒子的羟基自由基产生能力在间歇式反应器和连续流动反应器中均得到了验证,这标志着朝着其未来作为光辅助级联反应中的混合催化剂应用迈出了关键一步。