Eyssler Arnim, Lu Ye, Matam Santhosh Kumar, Weidenkaff Anke, Ferri Davide
Swiss Federal Laboratories for Materials Science and Technology, Dübendorf, Switzerland.
Chimia (Aarau). 2012;66(9):675-80. doi: 10.2533/chimia.2012.675.
Palladium is the precious metal of choice for methane oxidation and perovskite-type oxides offer the possibility to stabilize it as PdO, considered crucial for catalytic activity. Pd can adopt different oxidation and coordination states when associated with perovskite-type oxides. Here, we review our work on the effect of perovskite composition on the oxidation and coordination states of Pd and its influence on catalytic activity for methane oxidation in the case of typical Mn, Fe and Co perovskite-based oxidation catalysts. Especially X-ray absorption near edge structure (XANES) spectroscopy is shown to be crucial to fingerprint the different coordination states of Pd. Pd substitutes Fe and Co in the octahedral sites but without modifying catalytic activity with respect to the Pd-free perovskite. On LaMnO(3) palladium is predominantly exposed at the surface thus bestowing catalytic activity for methane oxidation. However, the occupancy of B-cation sites of the perovskite structure by Pd can be exploited to cyclically activate Pd and to protect it from particle growth. This is explicitly demonstrated for La(Fe, Pd)O(3), where catalytic activity for methane oxidation is enhanced under oscillating redox conditions at 500 °C, therefore paving the way to the practical application in three-way catalysts for stoichiometric natural gas engines.
钯是甲烷氧化反应中首选的贵金属,而钙钛矿型氧化物能够将其稳定为PdO,这被认为对催化活性至关重要。当与钙钛矿型氧化物结合时,钯可以呈现不同的氧化态和配位态。在此,我们回顾了我们的工作,即在典型的基于锰、铁和钴的钙钛矿型氧化催化剂中,研究钙钛矿组成对钯的氧化态和配位态的影响及其对甲烷氧化催化活性的影响。特别是,X射线吸收近边结构(XANES)光谱对于识别钯的不同配位态至关重要。钯在八面体位置替代铁和钴,但相对于不含钯的钙钛矿,其催化活性并未改变。在LaMnO₃上,钯主要暴露在表面,从而赋予了甲烷氧化催化活性。然而,钙钛矿结构中B阳离子位点被钯占据的情况可用于循环激活钯并防止其颗粒生长。这在La(Fe, Pd)O₃中得到了明确证明,在500℃的振荡氧化还原条件下,其甲烷氧化催化活性得到增强,因此为用于化学计量天然气发动机的三元催化剂的实际应用铺平了道路。