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Orientation-Dependent Oxygen Evolution Activities of Rutile IrO<sub>2</sub>and RuO<sub>2</sub>

The Journal of Physical Chemistry Letters · 2014 · Vol. 5(10) · pp. 1636–1641
Kelsey A. StoerzingerLiang QiaoMichael D. BiegalskiYang Shao‐Horn

Abstract

The activities of the oxygen evolution reaction (OER) on IrO2 and RuO2 catalysts are among the highest known to date. However, the intrinsic OER activities of surfaces with defined crystallographic orientations are not well-established experimentally. Here we report that the (100) surface of IrO2 and RuO2 is more active in alkaline environments (pH 13) than the most thermodynamically stable (110) surface. The OER activity was correlated with the density of coordinatively undersaturated metal sites of each crystallographic facet. The surface-orientation-dependent activities can guide the design of nanoscale catalysts with increased activity for electrolyzers, metal-air batteries, and photoelectrochemical water splitting applications.

Electrocatalysts for Energy ConversionAdvanced battery technologies researchAdvanced Photocatalysis TechniquesOxygen evolutionRutileWater splittingCatalysisMaterials scienceFacet (psychology)Orientation (vector space)OxygenMetalTransition metal

Funding

  • National Science Foundation
  • U.S. Department of Energy
Citations
561
FWCI
12.44
field-weighted impact
References
32
Percentile
99%
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Citations per year
References
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Chemical Reviews · 2010 · 9,183 citations
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Powering the planet with solar fuel
Nature Chemistry · 2009 · 1,720 citations
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Electrochimica Acta · 1991 · 699 citations
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