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Measurements of Oxygen Electroadsorption Energies and Oxygen Evolution Reaction on RuO2(110): A Discussion of the Sabatier Principle and Its Role in Electrocatalysis.
Kuo, Ding-Yuan; Paik, Hanjong; Kloppenburg, Jan; Faeth, Brendan; Shen, Kyle M; Schlom, Darrell G; Hautier, Geoffroy; Suntivich, Jin.
  • Kuo DY; Department of Materials Science and Engineering , Cornell University , Ithaca , New York 14853 , United States.
  • Paik H; Department of Materials Science and Engineering , Cornell University , Ithaca , New York 14853 , United States.
  • Kloppenburg J; Institute of Condensed Matter and Nanosciences (IMCN) , Université Catholique de Louvain , Louvain-la-Neuve 1348 , Belgium.
  • Faeth B; Department of Physics, Laboratory of Atomic and Solid State Physics , Cornell University , Ithaca , New York 14853 , United States.
  • Shen KM; Department of Physics, Laboratory of Atomic and Solid State Physics , Cornell University , Ithaca , New York 14853 , United States.
  • Schlom DG; Kavli Institute at Cornell for Nanoscale Science , Cornell University , Ithaca , New York 14853 , United States.
  • Hautier G; Department of Materials Science and Engineering , Cornell University , Ithaca , New York 14853 , United States.
  • Suntivich J; Kavli Institute at Cornell for Nanoscale Science , Cornell University , Ithaca , New York 14853 , United States.
J Am Chem Soc ; 140(50): 17597-17605, 2018 Dec 19.
Article en En | MEDLINE | ID: mdl-30463402
ABSTRACT
We report the hydroxide (OHad) and oxide (Oad) experimental electroadsorption free energies, their dependences on pH, and their correlations to the oxygen evolution reaction (OER) electrocatalysis on RuO2(110) surface. The Sabatier principle predicts that catalyst is most active when the intermediate stabilization is moderate, not too strong such that the bound intermediate disrupts the subsequent catalytic cycle, nor too weak such that the surface is ineffective. For decades, researchers have used this concept to rationalize the activity trend of many OER electrocatalysts including RuO2, which is among the state-of-the-art OER catalysts. In this article, we report an experimental assessment of the Sabatier principle by comparing the oxygen electroadsorption energy to the OER electrocatalysis for the first time on RuO2. We find that the OHad and Oad electroadsorption energies on RuO2(110) depend on pH and obey the scaling relation. However, we did not observe a direct correlation between the OHad and Oad electroadsorption energies and the OER activity in the comparative analysis that includes both RuO2(110) and IrO2(110). Our result raises a question of whether the Sabatier principle can describe highly active electrocatalysts, where the kinetic aspects may influence the electrocatalysis more strongly than the electroadsorption energy, which captures only the thermodynamics of the intermediates and not yet kinetics.

Texto completo: 1 Banco de datos: MEDLINE Idioma: En Año: 2018 Tipo del documento: Article

Texto completo: 1 Banco de datos: MEDLINE Idioma: En Año: 2018 Tipo del documento: Article