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首页> 外文期刊>RSC Advances >Insight into C plus O(OH) reaction for carbon elimination on different types of CoNi(111) surfaces: a DFT study
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Insight into C plus O(OH) reaction for carbon elimination on different types of CoNi(111) surfaces: a DFT study

机译:DFT研究深入了解C加O(OH)反应以消除不同类型CoNi(111)表面上的碳

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A density-functional theory (DFT) method has been performed to investigate the reaction of C + O(OH) on three types of bimetallic alloy CoNi(111) surface, and the results obtained are compared with those on the pure Ni(111) surface. Our results show that the introduction of Co into the Ni catalyst is beneficial for the adsorption of C, O and OH species, while it weakens the adsorption of CO. Moreover, O(OH) absorbs preferentially on the CoNi(111) surfaces with the surface enrichment of Co compared with the homogeneous CoNi(111) surface; the increased degree of O adsorption energy outweighs the corresponding values of C on the pure Ni(111) and three types of bimetallic alloy CoNi(111) surfaces, indicating that Co has a stronger affinity for oxygen species than for carbon species. On the other hand, the mechanism of the C + O(OH) reaction and the corresponding rate constants at different temperatures show that OH species have a stronger ability to eliminate carbon than O species on Ni(111) and CoNi(111) surfaces; on the CoNi(111) surface, when the Co surface coverage is equal to 1 monolayer (ML), compared to Ni(111), the C + O reaction can be accelerated. When the Co surface coverage is equal to 3/4 ML, the C + OH reaction is the most favorable; further, the rate constant for the C + OH reaction on a CoNi(111) with Co surface coverage of 3/4 ML is much larger than that of the C + O reaction on a CoNi(111) with Co surface coverage of 1 ML. As a result, for carbon elimination on the CoNi alloy surface, OH species should serve as the key species for carbon elimination, and the Co surface coverage of CoNi(111) surface should be kept at 3/4 ML.
机译:进行了密度泛函理论(DFT)方法研究C + O(OH)在三种类型的双金属合金CoNi(111)表面上的反应,并将所得结果与纯Ni(111)上的结果进行了比较。表面。我们的结果表明,将Co引入Ni催化剂中有利于C,O和OH种类的吸附,同时削弱了CO的吸附。此外,O(OH)优先吸附在CoNi(111)表面,并且与均匀CoNi(111)表面相比,Co的表面富集; O吸附能的增加程度超过纯Ni(111)和三种类型的双金属合金CoNi(111)表面上C的对应值,表明Co对氧的亲和力比对碳的强。另一方面,在不同温度下C + O(OH)反应的机理和相应的速率常数表明,在Ni(111)和CoNi(111)表面上,OH物种比O物种具有更强的除碳能力。在CoNi(111)表面上,当Co表面覆盖率等于1个单层(ML)时,与Ni(111)相比,可以加速C + O反应。当Co表面覆盖率等于3/4 ML时,C + OH反应最有利;此外,Co表面覆盖为3/4 ML的CoNi(111)上的C + OH反应的速率常数比Co表面覆盖为1 ML的CoNi(111)上的C + OH反应的速率常数大得多。结果,为了消除CoNi合金表面的碳,应将OH物种作为消除碳的关键物种,并且CoNi(111)表面的Co表面覆盖率应保持在3/4 ML。

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