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Is Steam an Oxidant or a Reductant for Nickel/Doped‐Ceria Cermets?

机译:蒸汽是镍/掺杂二氧化铈金属陶瓷的氧化剂还是还原剂?

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摘要

Nickel/doped‐ceria composites are promising electrocatalysts for solid‐oxide fuel and electrolysis cells. Very often steam is present in the feedstock of the cells, frequently mixed with other gases, such as hydrogen or CO2. An increase in the steam concentration in the feed mixture is considered accountable for the electrode oxidation and the deactivation of the device. However, direct experimental evidence of the steam interaction with nickel/doped‐ceria composites, with adequate surface specificity, are lacking. Herein we explore in situ the surface state of nickel/gadolinium‐doped ceria (NiGDC) under O2, H2, and H2O environments by using near‐ambient‐pressure X‐ray photoelectron and absorption spectroscopies. Changes in the surface oxidation state and composition of NiGDC in response to the ambient gas are observed. It is revealed that, in the mbar pressure regime and at intermediate temperature conditions (500–700 °C), steam acts as an oxidant for nickel but has a dual oxidant/reductant function for doped ceria.
机译:镍/掺杂二氧化铈复合材料是用于固体氧化物燃料和电解槽的有前途的电催化剂。电池的原料中经常有蒸汽,经常与其他气体(例如氢气或二氧化碳)混合。进料混合物中蒸汽浓度的增加被认为是造成电极氧化和装置失活的原因。但是,缺乏直接的实验证据证明蒸汽与镍/掺杂二氧化铈复合材料具有足够的表面特异性。在这里,我们通过使用近环境压力X射线光电子和吸收光谱学,在O2,H2和H2O环境下原位探索掺杂镍/ ga的二氧化铈(NiGDC)的表面状态。观察到响应于环境气体,NiGDC的表面氧化态和组成的变化。结果表明,在毫巴压力下和中等温度条件下(500-700 C),蒸汽可作为镍的氧化剂,但对掺杂的二氧化铈具有双重氧化剂/还原剂的功能。

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