Koch Gregor, Hävecker Michael, Kube Pierre, Tarasov Andrey, Schlögl Robert, Trunschke Annette
Department of Inorganic Chemistry, Fritz-Haber-Institut der Max-Planck-Gesellschaft, Berlin, Germany.
Max Planck Institute for Chemical Energy Conversion, Heterogeneous Reactions, Max-Planck-Gesellschaft, Mühlheim, Germany.
Front Chem. 2021 Sep 17;9:746229. doi: 10.3389/fchem.2021.746229. eCollection 2021.
A Sm-deficient SmMnO perovskite was prepared on a gram scale to investigate the influence of the chemical potential of the gas phase on the defect concentration, the oxidation states of the metals and the nature of the oxygen species at the surface. The oxide was treated at 450°C in nitrogen, synthetic air, oxygen, water vapor or CO and investigated for its properties as a catalyst in the oxidative dehydrogenation of propane both before and after treatment. After treatment in water vapor, but especially after treatment with CO, increased selectivity to propene was observed, but only when water vapor was added to the reaction gas. As shown by XRD, SEM, EDX and XRF, the bulk structure of the oxide remained stable under all conditions. In contrast, the surface underwent strong changes. This was shown by AP-XPS and AP-NEXAFS measurements in the presence of the different gas atmospheres at elevated temperatures. The treatment with CO caused a partial reduction of the metals at the surface, leading to changes in the charge of the cations, which was compensated by an increased concentration of oxygen defects. Based on the present experiments, the influence of defects and concentration of electrophilic oxygen species at the catalyst surface on the selectivity in propane oxidation is discussed.
制备了克级的Sm缺陷型SmMnO钙钛矿,以研究气相化学势对缺陷浓度、金属氧化态以及表面氧物种性质的影响。将该氧化物在450°C下分别于氮气、合成空气、氧气、水蒸气或CO中进行处理,并对其在处理前后作为丙烷氧化脱氢催化剂的性能进行研究。在水蒸气中处理后,尤其是在CO中处理后,观察到对丙烯的选择性增加,但前提是向反应气体中添加水蒸气。XRD、SEM、EDX和XRF分析表明,在所有条件下氧化物的体相结构保持稳定。相比之下,表面发生了强烈变化。这通过在高温下不同气体气氛存在下的AP-XPS和AP-NEXAFS测量得以证明。用CO处理导致表面金属部分还原,从而导致阳离子电荷发生变化,这由氧缺陷浓度的增加来补偿。基于目前的实验,讨论了催化剂表面缺陷和亲电氧物种浓度对丙烷氧化选择性的影响。