Key Laboratory of Bio-based Material Science and Technology of Ministry of Education, Northeast Forestry University, Harbin, 150040, P. R. China.
College of Chemistry, Beijing Normal University, Beijing, 100875, P. R. China.
Angew Chem Int Ed Engl. 2023 Jul 3;62(27):e202301242. doi: 10.1002/anie.202301242. Epub 2023 Apr 28.
A sustainable photocatalyst for use with multiple purpose comprising demethylated lignin (Fe O @D-wood) was made by treatment of wood and iron oxide. Characterization followed by XRD, UV/Vis, photo-current studies, and electrochemical measurements. This material became subject of photocatalytic explorations for water treatment and material synthesis by radical photopolymerization. Exposure of Fe O @D-wood with artificial sunlight showed an improved activity considering photochemical oxidation of organic pollutants in the presence of H O . The efficient generation of reactive radicals brought this system also to photopolymerization. Here, radicals based on reactive oxygen species (ROS) generated in the catalytic cycle can be seen as the dominating species to initiate radical polymerization. A mixture of UDMA and TPGDA showed good reactivity with cumene hydroperoxide (CHP). Photocatalyst used for water treatment facilitates reuse for photopolymerization.
一种可用于多种用途的可持续光催化剂,由木质素(Fe O @D-wood)和氧化铁处理制成。对其进行了特征描述,包括 XRD、UV/Vis、光电流研究和电化学测量。该材料成为通过自由基光聚合进行水处理和材料合成的光催化探索的对象。在 H O 的存在下,用人工阳光照射 Fe O @D-wood 表明,考虑到有机污染物的光化学氧化,其活性得到了提高。活性自由基的有效生成使该体系也能够进行光聚合。在这里,可以看出催化循环中生成的基于活性氧物质(ROS)的自由基是引发自由基聚合的主要物质。UDMA 和 TPGDA 的混合物与过氧化环己酮(CHP)显示出良好的反应性。用于水处理的光催化剂有利于光聚合的再利用。