Villa Katherine, Galán-Mascarós José Ramón
Institute of Chemical Research of Catalonia (ICIQ), The Barcelona Institute of Science and Technology (BIST), Av. Països Catalans, 16, Tarragona, 43007, Spain.
Catalan Institution for Research and Advanced Studies (ICREA), Pg. Lluís Companys 23, 08010, Barcelona, Spain.
ChemSusChem. 2021 May 6;14(9):2023-2033. doi: 10.1002/cssc.202100192. Epub 2021 Mar 18.
The direct photocatalytic conversion of methane into methanol with water at room temperature and pressure has attracted particular attention in recent decades. Valuable insight has been obtained into the reaction mechanisms and the key descriptors that control photoactivity and selectivity. This Minireview highlights the different efforts that have been undergone on the design of nanostructured photocatalytic systems to enhance the selectivity to methanol. The effect of structural and electronic aspects, such as surface area, morphologies, crystal facets, redox properties, metal doping, and heterojunctions, on photocatalytic performance, are discussed. The roles of free hydroxyl radicals and/or hydroxy groups for methane activation on the photocatalyst surface are also presented. This Minireview aims to provide an insight into the optimal properties and configurations of the nanostructured photocatalytic materials for tuning their reactivity on the selective oxidation of CH to methanol with water. The remaining challenges and promising directions for bringing this technology a step closer to real-world application are also highlighted.
近几十年来,在室温和常压下将甲烷与水直接光催化转化为甲醇引起了特别关注。人们对反应机理以及控制光活性和选择性的关键描述符有了宝贵的认识。本综述重点介绍了为提高对甲醇的选择性而在纳米结构光催化系统设计方面所做的不同努力。讨论了结构和电子方面,如表面积、形态、晶面、氧化还原性质、金属掺杂和异质结等对光催化性能的影响。还介绍了光催化剂表面的游离羟基自由基和/或羟基在甲烷活化中的作用。本综述旨在深入了解纳米结构光催化材料的最佳性能和构型,以调节其将CH选择性氧化为甲醇与水的反应活性。还强调了使该技术更接近实际应用所面临的剩余挑战和有前景的方向。