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Solid-state kinetics and catalytic behavior of selective oxidation catalysts from time-resolved XAFS investigations

机译:时间分辨XAFS研究中选择性氧化催化剂的固态动力学和催化行为

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Time-resolved measurements are required to elucidate time-dependencies of the electronic and geometric structure of a catalyst under changing reaction conditions. Monitoring the evolution of the bulk structure of a catalyst under changing conditions reveals the solid-state kinetics of the corresponding reaction. X-ray absorption spectroscopy (XAS) permits to reveal quantitative phase composition and average valence together with the evolution of the local structure. Hence, combining time-resolved XAS with simultaneous catalysis measurements may elucidate correlations between catalytic performance, the catalyst state under reaction conditions, and its solid-state kinetics. Here, results from time-resolved in situ XAS investigations of various molybdenum-based selective oxidation catalysts are compared and discussed. Model systems (i.e. α-MoO3, hexagonal MoO3 supported on SBA-15, and H4PVMo_(11)O_(40)]) suitable to distinguish structural effects and promotion by additional metal centers have been studied under changing reaction conditions. Correlations between reduction and oxidation solid-state kinetics and catalytic performance reveal the dependence of the selectivity of the catalyst on its electronic structure. In particular the re-oxidation kinetics and the average valence under reaction conditions appear to be determined by the defect structure of the underlying catalyst bulk.
机译:需要时间分辨的测量以阐明在变化的反应条件下催化剂的电子和几何结构的时间依赖性。在变化的条件下监测催化剂本体结构的演变揭示了相应反应的固态动力学。 X射线吸收光谱(XAS)可以揭示定量相组成和平均价以及局部结构的演变。因此,将时间分辨的XAS与同时进行的催化测量结合可以阐明催化性能,反应条件下的催化剂状态及其固态动力学之间的相关性。在此,对各种基于钼的选择性氧化催化剂的时间分辨原位XAS研究结果进行了比较和讨论。在变化的反应条件下,已经研究了适用于区分结构效应和通过其他金属中心促进作用的模型系统(即α-MoO3,SBA-15上支撑的六角形MoO3和H4PVMo_(11)O_(40)])。还原和氧化固态动力学与催化性能之间的相关性揭示了催化剂的选择性对其电子结构的依赖性。特别地,反应条件下的再氧化动力学和平均化合价似乎由下面的催化剂本体的缺陷结构决定。

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