Theoretical Investigation of the Activity of Cobalt Oxides for the Electrochemical Oxidation of Water

过电位 化学 析氧 Pourbaix图 氧气 电化学 氧化态 尖晶石 无机化学 物理化学 电极 催化作用 冶金 有机化学 材料科学 生物化学
作者
Michal Bajdich,Mónica García‐Mota,Aleksandra Vojvodić,Jens K. Nørskov,Alexis T. Bell
出处
期刊:Journal of the American Chemical Society [American Chemical Society]
卷期号:135 (36): 13521-13530 被引量:1354
标识
DOI:10.1021/ja405997s
摘要

The presence of layered cobalt oxides has been identified experimentally in Co-based anodes under oxygen-evolving conditions. In this work, we report the results of theoretical investigations of the relative stability of layered and spinel bulk phases of Co oxides, as well as the stability of selected surfaces as a function of applied potential and pH. We then study the oxygen evolution reaction (OER) on these surfaces and obtain activity trends at experimentally relevant electro-chemical conditions. Our calculated volume Pourbaix diagram shows that β-CoOOH is the active phase where the OER occurs in alkaline media. We calculate relative surface stabilities and adsorbate coverages of the most stable low-index surfaces of β-CoOOH: (0001), (0112), and (1014). We find that at low applied potentials, the (1014) surface is the most stable, while the (0112) surface is the more stable at higher potentials. Next, we compare the theoretical overpotentials for all three surfaces and find that the (1014) surface is the most active one as characterized by an overpotential of η = 0.48 V. The high activity of the (1014) surface can be attributed to the observation that the resting state of Co in the active site is Co(3+) during the OER, whereas Co is in the Co(4+) state in the less active surfaces. Lastly, we demonstrate that the overpotential of the (1014) surface can be lowered further by surface substitution of Co by Ni. This finding could explain the experimentally observed enhancement in the OER activity of Ni(y)Co(1-y)O(x) thin films with increasing Ni content. All energetics in this work were obtained from density functional theory using the Hubbard-U correction.
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