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Effect of local metal microstructure on adsorption on bimetallic surfaces: Atomic nitrogen on NiPt(111)

机译:局部金属微观结构对双金属表面吸附的影响:NiPt(111)上的原子氮

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摘要

The adsorption of atomic nitrogen on NiPt(111) surface bimetallics has been investigated as a function of the local microstructure of Ni and Pt atoms via density functional theory (DFT) calculations. Microstructures include surface and subsurface Ni atoms on Pt(111) as limiting cases, and also small clusters of Ni in the first andor second layer of Pt. It is shown that the binding energy of N can be approximated as a perturbation from that on the host metal (Pt) with a linear short-ranged correction from the guest metal (Ni) that accounts for the coordination environment of nitrogen up to the 3rd nearest Ni neighbor. This model is rationalized with the d-band center theory. Coverage effects are also included. The model can be parameterized with a limited number of DFT calculations and applied to other bimetallic catalysts to estimate the coverage dependent binding energy on complex metal microstructures.
机译:通过密度泛函理论(DFT)计算,研究了NiPt(111)表面双金属化合物上原子氮的吸附与Ni和Pt原子局部微观结构的关系。微观结构包括Pt(111)上的表面和亚表面Ni原子作为极限情况,以及Pt的第一层和/或第二层中的Ni小簇。结果表明,N的结合能可以近似为主体金属(Pt)上的扰动,而来宾金属(Ni)的线性短程校正则可以解释氮的配位环境,直到第三位为止。最近的镍邻居。使用d波段中心理论对该模型进行了合理化。覆盖效果也包括在内。可以使用有限数量的DFT计算对模型进行参数化,并将其应用于其他双金属催化剂,以估计复杂金属微结构上与覆盖率相关的结合能。

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