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首页> 外文期刊>Applied Catalysis, A. General: An International Journal Devoted to Catalytic Science and Its Applications >Ce-Pr mixed oxides as active supports for Water-gas Shift reaction: Experimental and density functional theory characterization
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Ce-Pr mixed oxides as active supports for Water-gas Shift reaction: Experimental and density functional theory characterization

机译:Ce-Pr混合氧化物作为水煤气变换反应的活性载体:实验和密度泛函理论表征

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摘要

Experimental measurements by several techniques and density functional theory (DFT) calculations are combined to characterize Ce-Pr mixed oxides and deeply understand the influence of Pr dopant in their geometric and electronic structure, reducibility and catalytic behavior concerning the Water-gas Shift reaction (WGSR). Samples with nominal Pr dopant content of 0,5,15 and 50 at% (atomic percentage) are synthesized via urea decomposition method and subsequent calcination in air at 450 °C. X-ray diffraction characterization shows an increase of ceria lattice parameter for Pr loadings lower than 15 at%, which is consistent with a solid solution formation. X-ray photoelectron spectra indicate a surface enrichment in Pr cations and a diminution of Ce~(3+) surface concentration as Pr content increases. DFT calculations confirm the preferential reduction of Pr cations due to a single oxygen vacancy formation in Ce-Pr mixed oxides, and also a significant decrease in the energy needed for this 0 removal compare to that in pure CeO2. Both experimental measurements and DFT calculations evidence that the addition of Pr dopant to ceria promotes oxygen vacancies formation, redox properties and oxygen storage capacity (OSC). Even more, the same promoting effect of Pr in the WGSR intrinsic catalytic activity of Ce-Pr mixed oxides is observed.
机译:结合多种技术的实验测量结果和密度泛函理论(DFT)计算来表征Ce-Pr混合氧化物,并深入了解Pr掺杂剂对其几何和电子结构,还原性和催化行为的影响,涉及水煤气变换反应(WGSR) )。通过尿素分解法并随后在450°C的空气中煅烧,合成标称Pr掺杂剂含量为0.5、15和50 at%(原子百分比)的样品。 X射线衍射表征显示,对于Pr含量低于15 at%的氧化铈,晶格参数的增加与固溶体的形成是一致的。 X射线光电子能谱表明随着Pr含量的增加,Pr阳离子表面富集,Ce〜(3+)表面浓度减小。 DFT计算证实,由于Ce-Pr混合氧化物中只有一个氧空位形成,Pr阳离子的优先还原,并且与纯CeO2相比,该0去除所需的能量也显着降低。实验测量和DFT计算均证明,向铈土中添加Pr掺杂剂可促进氧空位的形成,氧化还原特性和氧存储能力(OSC)。甚至还观察到Pr对Ce-Pr混合氧化物的WGSR固有催化活性具有相同的促进作用。

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