首页> 外文期刊>Angewandte Chemie >In Situ and Theoretical Studies for the Dissociation of Water on an Active Ni/CeO2 Catalyst: Importance of Strong Metal-Support Interactions for the Cleavage of O-H Bonds
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In Situ and Theoretical Studies for the Dissociation of Water on an Active Ni/CeO2 Catalyst: Importance of Strong Metal-Support Interactions for the Cleavage of O-H Bonds

机译:活性Ni / CeO2催化剂上水离解的原位和理论研究:强金属-载体相互作用对O-H键断裂的重要性

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摘要

Water dissociation is crucial in many catalytic reactions on oxide-supported transition-metal catalysts. Supported by experimental and density-functional theory results, the effect of the support on O-H bond cleavage activity is elucidated for nickel/ceria systems. Ambient-pressure O1s photoemission spectra at low Ni loadings on CeO2(111) reveal a substantially larger amount of OH groups as compared to the bare support. Computed activation energy barriers for water dissociation show an enhanced reactivity of Ni adatoms on CeO2(111) compared with pyramidal Ni-4 particles with one Ni atom not in contact with the support, and extended Ni(111) surfaces. At the origin of this support effect is the ability of ceria to stabilize oxidized Ni2+ species by accommodating electrons in localized f-states. The fast dissociation of water on Ni/CeO2 has a dramatic effect on the activity and stability of this system as a catalyst for the water-gas shift and ethanol steam reforming reactions.
机译:水解离在氧化物负载的过渡金属催化剂上的许多催化反应中至关重要。在实验和密度泛函理论结果的支持下,阐明了镍/二氧化铈体系对O-H键裂解活性的影响。与裸露的载体相比,在CeO2(111)上的低Ni负载下,环境压力O1s的光发射光谱显示出大量的OH基团。计算得出的水解离活化能垒显示,与具有一个不与载体接触的Ni原子的金字塔状Ni-4颗粒和扩展的Ni(111)表面相比,CeO2(111)上的Ni原子的反应性增强。这种支持作用的起因是二氧化铈通过在局部f态容纳电子来稳定氧化的Ni2 +物质的能力。水在Ni / CeO2上的快速离解对于作为水煤气变换和乙醇蒸汽重整反应的催化剂的系统的活性和稳定性具有显着影响。

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