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Oygen Atom Adsorption on and Diffusion into Nb(110) and Nb(100) from First Principles

机译:从第一原理到氧原子在Nb(110)和Nb(100)上的吸附和扩散

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摘要

To understand the dynamics of oxidation of Nb, we examine the adsorption, absorption, and diffusion of an oxygen atom on, in, and into Nb(110) and Nb(100) surfaces, respectively, using density functional theory. Our calcula tions predict that the oxygen atom adsorbs on the threefold site on Nb(110) and the fourfold hollow site on Nb(100), and the adsorption energy is -5.08 eV and -5.18 eV, respectively. We find the long and short bridge sites to be transition states for O diffusion on Nb(110), while the on-top site is a rank-2 saddle point. In the subsurface region, the oxygen atom prefers the octahedral site, as in bulk niobium. Our results show also that the O atom is more stable on Nb(110) subsurface than on Nb(100) subsurface. The diffusion of oxygen atoms into niobium surfaces passes through transition states where the oxy gen atom is coordinated to four niobium atoms. The diffusion barriers of the oxygen atom into Nb(110) and Nb(100) are 1.81 eV and 2.05 eV, respectively. An analysis of the electronic density of states reveals the emergence of well-localized electronic states below the lowest states of clean Nb surfaces due to d-p orbital hybridization.
机译:为了了解Nb氧化的动力学,我们使用密度泛函理论研究了氧原子在Nb(110)和Nb(100)表面上,之中和之中的吸附,吸收和扩散。我们的计算预测,氧原子吸附在Nb(110)的三重部位和Nb(100)的四重中空部位上,吸附能分别为-5.08 eV和-5.18 eV。我们发现长和短桥位点是O在Nb(110)上扩散的过渡态,而顶部位点是2级鞍点。在次表层区域,氧原子更喜欢八面体位,就像在大块铌中一样。我们的结果还表明,O原子在Nb(110)亚表面上比在Nb(100)亚表面上更稳定。氧原子向铌表面的扩散通过过渡态,其中氧原子与四个铌原子配位。氧原子向Nb(110)和Nb(100)的扩散势垒分别为1.81 eV和2.05 eV。对态电子密度的分析表明,由于d-p轨道杂交,在干净的Nb表面的最低态之下出现了局部电子态。

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