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XPS–SIMS Surface Characterization of Aluminovanadate Oxide Catalyst Precursors Co-Precipitated at Different pH: Effect of Calcination

机译:XPS–SIMS表面表征在不同pH下共沉淀的铝酸铝铝酸盐催化剂前体:煅烧的影响

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摘要

X-ray photoelectron spectroscopy and time-offlight secondary ion mass spectrometry were employed in a comparative study of the surface physical and chemical state of aluminovanadate oxide catalyst precursors (V-Al- O), which were precipitated in the range of pH from 5.5 to 10, after drying and calcination. Core-level photoelectron spectra, X-ray induced Auger and valence band spectra of the samples were measured so as to quantitatively evaluate the surface concentrations of the catalyst components. The binding energy shifts of the respective O 1s, V 2p and Al 2p lines were determined as a function of pH and analyzed in terms of the initial state effect related to the atomic charge and Madelung potential. The surface of the catalysts was composed of aluminum hydroxide/oxyhydroxide and of dispersed vanadium oxide species. Increasing pH was found to result in a monotonic variation of the elemental surface composition, modification of the valence band, progressive hydroxylation of the surface and increasing dispersion of vanadium oxide species. Increasing pH was also accompanied by an increase in the abundance of V4? species, specific surface area and reducibility. Calcination in air at 500 °C gave rise to surface segregation of vanadium, changes in the valence band and partial dehydroxylation. The structural transformations in vanadium oxide species and aluminium hydroxide support and their interaction were accompanied by an increasing abundance of V-O-Al bonds. The net result of the restructuring was a decrease in the specific surface area and reducibility of the calcined catalysts. The enhancement of the catalytic activity in propane oxidative dehydrogenation demonstrated by V-Al-O samples with increasing precipitation pH and after calcination was in good correlation with a growing population of the V4? states and increasing nucleophilicity of oxygen sites. © Springer Science+Business Media, LLC 2012.
机译:比较了X射线光电子能谱和时空二次离子质谱法对铝酸新铝酸盐氧化物催化剂前体(V-Al-O)的表面物理和化学状态的比较研究,该前体在5.5至pH范围内沉淀。 10,干燥后煅烧。测量了样品的核能级光电子能谱,X射线诱导的俄歇谱和价带谱,以便定量评估催化剂组分的表面浓度。确定各个O 1s,V 2p和Al 2p线的结合能移动与pH的关系,并根据与原子电荷和马德隆势有关的初始状态效应进行分析。催化剂的表面由氢氧化铝/羟基氧化物和分散的氧化钒物质组成。发现增加的pH导致元素表面组成的单调变化,价带的改变,表面的逐步羟基化以及钒氧化物种类的分散性增加。 pH值的增加还伴随着V4丰度的增加。种类,比表面积和还原性。在500°C的空气中煅烧会导致钒的表面偏析,化合价带变化和部分脱羟基。钒氧化物物种和氢氧化铝载体的结构转变及其相互作用伴随着V-O-Al键丰度的增加。重组的最终结果是降低了煅烧催化剂的比表面积和还原性。 V-Al-O样品随着沉淀pH值的增加和煅烧后丙烷氧化脱氢中催化活性的增强与V4α的增加有关。状态和氧位点的亲核性增加。 ©Springer Science + Business Media,LLC 2012。

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