Blume R, Hävecker M, Zafeiratos S, Teschner D, Vass E, Schnörch P, Knop-Gericke A, Schlögl R, Lizzit S, Dudin P, Barinov A, Kiskinova M
Fritz-Haber-Institut der Max-Planck-Gesellschaft, Faradayweg 4-6, 14195, Berlin, Germany.
Phys Chem Chem Phys. 2007 Jul 21;9(27):3648-57. doi: 10.1039/b700986k. Epub 2007 Jun 6.
One of the prerequisites for the detailed understanding of heterogeneous catalysis is the identification of the dynamic response of the catalyst surface under variable reaction conditions. The present study of methanol oxidation on different model Ru pre-catalysts, performed approaching the realistic catalytic reaction conditions, provides direct evidence of the significant effect of reactants' chemical potentials and temperature on the catalyst surface composition and the corresponding catalytic activity and selectivity. The experiments were carried out for three regimes of oxygen potentials in the 10(-1) mbar pressure range, combining in situ analysis of the catalyst surface by synchrotron-based photoelectron core level spectroscopy with simultaneous monitoring of the products released in the gas phase by mass spectroscopy. Metallic Ru with adsorbed oxygen and transient 'surface oxide', RuO(x), with varying x have been identified as the catalytically active states under specific reaction conditions, favouring partial or full oxidation pathways. It has been shown that the composition of catalytically active steady states, exhibiting different activity and selectivity, evolves under the reaction conditions, independent of the crystallographic orientation and the initial pre-catalyst chemical state, metallic Ru or RuO(2).
深入理解多相催化的前提条件之一是确定催化剂表面在可变反应条件下的动态响应。本研究在接近实际催化反应条件下,对不同的钌预催化剂模型上的甲醇氧化进行了研究,直接证明了反应物的化学势和温度对催化剂表面组成以及相应的催化活性和选择性有显著影响。实验在10(-1)毫巴压力范围内的三种氧势条件下进行,将基于同步加速器的光电子能谱对催化剂表面的原位分析与质谱对气相中释放产物的同步监测相结合。已确定吸附氧的金属钌和具有不同x值的瞬态“表面氧化物”RuO(x)是特定反应条件下的催化活性状态,有利于部分或完全氧化途径。研究表明,表现出不同活性和选择性的催化活性稳态组成在反应条件下会发生变化,与晶体取向和初始预催化剂化学状态(金属钌或RuO(2))无关。