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A density functional theory study on influence of 3d alloying elements on electrochemical properties of cobalt-base alloys

机译:密度泛函理论研究3d合金元素对钴基合金电化学性能的影响

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The paper systematically studies the impact of the 3d transition metals Ti, V, Cr, Mn, Fe, Ni and Cu on electrochemical stability of non-passivated cobalt-base alloys {0001} surface by evaluating the chemical potential and the electrode potential shift relative to pure cobalt metal using density functional theory calculations. Cr, Fe, Mn, and V are found to make the Co atoms more stable on the {0001} surfaces of the corresponding alloys compared to pure Co {0001} surfaces, whereas Ti, Ni, and Cu make Co atoms much less stable. Among all the considered alloying elements, chrome is the most beneficial to the stability enhancement of alloys. Furthermore, the effects of water and hydroxyl adsorption on the electrochemical stability are considered. It is found that the surface adsorption properties may be considerably modified by introducing the Cr atoms. Our results indicate that water or hydroxyl adsorption destabilizes both the Co–Cr alloy and pure Co surface. However, the Co–Cr alloy surface is still more stable than the pure Co surface in the presence of adsorbed water, while the pure Co surface is more stable than the Co– Cr alloy surface in the presence of adsorbed hydroxyl. Our calculation reveals that the electrochemical corrosion property of the Co–Cr alloy is insensitive to water adsorption and sensitive to hydroxyl adsorption in comparison with the pure Co metal.
机译:通过评估化学势和相对于电极电位的偏移,系统地研究了3d过渡金属Ti,V,Cr,Mn,Fe,Ni和Cu对非钝化钴基合金{0001}表面电化学稳定性的影响。使用密度泛函理论计算得到纯钴金属。与纯Co {0001}表面相比,发现Cr,Fe,Mn和V使相应合金的{0001}表面上的Co原子更稳定,而Ti,Ni和Cu使Co原子的稳定性低得多。在所有考虑的合金元素中,铬是最有利于增强合金稳定性的元素。此外,考虑了水和羟基吸附对电化学稳定性的影响。已经发现,通过引入Cr原子可以大大改变表面吸附性能。我们的结果表明,水或羟基的吸附会破坏Co-Cr合金和纯Co表面的稳定性。但是,在存在吸附水的情况下,Co-Cr合金表面仍比纯Co表面更稳定,而在存在吸附羟基的情况下,纯Co表面比Co-Cr合金表面更稳定。我们的计算表明,与纯Co金属相比,Co-Cr合金的电化学腐蚀性能对水吸附不敏感,对羟基吸附不敏感。

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