Rodriguez José A, Liu Ping, Graciani Jesús, Senanayake Sanjaya D, Grinter David C, Stacchiola Dario, Hrbek Jan, Fernández-Sanz Javier
Chemistry Department, Brookhaven National Laboratory , Upton, New York 11776, United States.
Department of Chemistry, State University of New York (SUNY) , Stony Brook, New York 11749, United States.
J Phys Chem Lett. 2016 Jul 7;7(13):2627-39. doi: 10.1021/acs.jpclett.6b00499. Epub 2016 Jun 28.
Inverse oxide/metal catalysts have shown to be excellent systems for studying the role of the oxide and oxide-metal interface in catalytic reactions. These systems can have special structural and catalytic properties due to strong oxide-metal interactions difficult to attain when depositing a metal on a regular oxide support. Oxide phases that are not seen or are metastable in a bulk oxide can become stable in an oxide/metal system opening the possibility for new chemical properties. Using these systems, it has been possible to explore fundamental properties of the metal-oxide interface (composition, structure, electronic state), which determine catalytic performance in the oxidation of CO, the water-gas shift and the hydrogenation of CO2 to methanol. Recently, there has been a significant advance in the preparation of oxide/metal catalysts for technical or industrial applications. One goal is to identify methods able to control in a precise way the size of the deposited oxide particles and their structure on the metal substrate.
反相氧化物/金属催化剂已被证明是研究氧化物及氧化物-金属界面在催化反应中作用的出色体系。由于在常规氧化物载体上沉积金属时难以实现的强氧化物-金属相互作用,这些体系可具有特殊的结构和催化性能。在体相氧化物中未出现或亚稳的氧化物相在氧化物/金属体系中可变得稳定,从而开启了具有新化学性质的可能性。利用这些体系,已能够探索金属-氧化物界面的基本性质(组成、结构、电子态),这些性质决定了CO氧化、水煤气变换以及CO₂加氢制甲醇反应中的催化性能。最近,用于技术或工业应用的氧化物/金属催化剂的制备取得了重大进展。一个目标是确定能够精确控制沉积在金属基底上的氧化物颗粒尺寸及其结构的方法。