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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Insight Into the Effect of CuNi(111) and FeNi(111) Surface Structure and Second Metal Composition on Surface Carbon Elimination by O or OH: A Comparison Study with Ni(111) Surface
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Insight Into the Effect of CuNi(111) and FeNi(111) Surface Structure and Second Metal Composition on Surface Carbon Elimination by O or OH: A Comparison Study with Ni(111) Surface

机译:深入了解CuNi(111)和FeNi(111)表面结构以及第二种金属成分对O或OH消除表面碳的影响:与Ni(111)表面的比较研究

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A density functional theory (DFT) calculation has been carried out to systematically investigate the mechanism of surface carbon elimination by 0 and OH on both the alloy FeNi(111) and CuNi(111) surfaces, including the homogeneous and the segregated surfaces, respectively; meanwhile, the obtained results are compared with those on the pure Ni(111) surface in order to probe into the effects of CuNi(111) and FeNi(111) surface structure and second metal composition on the performance of surface carbon elimination. Our results show that compared to the pure Ni(111) surface, the introduction of Fe into Ni increases the adsorption of O, OH, and C species, while it weakens the adsorption of CO and COH; the incorporation of Cu into Ni decreases the adsorption ability of C, O, OH, CO, and COH species. The mechanism of surface carbon elimination by O and OH shows that OH species is more effective for carbon elimination than O species on Ni(111), CuNi(111) surface and the segregated FeNi(111) surface; meanwhile, CuNi(111) and FeNi(111) surface structure and second metal composition have obvious effect on the performance of carbon elimination. Compared to Ni(111), FeNi(111) surface is not favorable for carbon, elimination, while CuNi(111) surface is beneficial for carbon elimination, in which the Cu enriched surface is much more favorable than the 1:1 Cu surface and the pure Ni(111), indicating that the segregated CuNi(111) surface with Cu enrichment significantly accelerates carbon elimination. Moreover, the good(OH) reaction. As a result, once carbon is formed on the segregated CuNi alloy surface with Cu enrichment, carbon deposits can be timely eliminated, which can well explain the reported experimental facts that CuNi bimetallic catalysts with Cu surface enrichment display excellent carbon-resistance ability in CH4/CO2 reforming.
机译:进行了密度泛函理论(DFT)计算,系统研究了FeNi(111)和CuNi(111)合金表面(包括均质表面和偏析表面)上的0和OH消除表面碳的机理;同时,将所得结果与纯Ni(111)表面的结果进行比较,以探讨CuNi(111)和FeNi(111)表面结构以及第二金属成分对表面碳消除性能的影响。我们的结果表明,与纯Ni(111)表面相比,将Fe引入Ni中会增加O,OH和C物种的吸附,而削弱CO和COH的吸附; Cu掺入Ni会降低C,O,OH,CO和COH物质的吸附能力。 O和OH去除表面碳的机理表明,与Ni(111),CuNi(111)表面和偏析的FeNi(111)表面上的O物种相比,OH物种对碳的去除更为有效。同时,CuNi(111)和FeNi(111)的表面结构和第二金属成分对除碳性能有明显的影响。与Ni(111)相比,FeNi(111)表面不利于碳的消除,而CuNi(111)表面有利于碳的消除,其中富铜表面比1:1铜表面更有利,纯Ni(111),表明具有Cu富集的偏析CuNi(111)表面显着加速了碳的消除。而且,良好的(OH)反应。结果,一旦在富集Cu的偏析CuNi合金表面形成了碳,就可以及时消除积碳,这可以很好地解释所报道的实验事实,即具有Cu表面富集的CuNi双金属催化剂在CH4二氧化碳重整。

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