4.8 Article

Reaction pathways of ethanol electrooxidation on polycrystalline platinum catalysts in acidic electrolytes

Journal

JOURNAL OF CATALYSIS
Volume 278, Issue 2, Pages 181-188

Publisher

ACADEMIC PRESS INC ELSEVIER SCIENCE
DOI: 10.1016/j.jcat.2010.11.018

Keywords

Ethanol; Acetic acid; Sulfate; Bisulfate; Oxidation; Platinum; Catalysis; Sum-frequency generation; SFG; Cyclic voltammetry

Funding

  1. US Army Research Office [W911NF-08-10309]
  2. US Air Force Office of Scientific Research [FA9550-09-1-0163]
  3. Alexander von Humboldt Foundation

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Ethanol electrooxidation reaction (EOR) pathways on polycrystalline platinum were studied with broadband sum-frequency generation (BB-SFG) spectroscopy and electrochemistry in unprecedented detail and under working fuel cell conditions. We present the first observation of adsorbed acetate and co-adsorbed sulfuric acid anions with SFG and a discussion of their relation to the EOR. Surface-adsorbed intermediates such as CO on Pt atop sites and acetate are observed in both H2SO4 and HClO4 solutions. However, CO molecules on bridge sites and sulfuric acid anions are found in H2SO4 only. At E < 0.5 V vs. Ag/AgCl, CO is the predominantly adsorbed species. Increasing the potential to E > 0.5 V results in the oxidative removal of CO and the adsorption of acetate anions. Experiments with isotopically labeled ethanol ((CH3CH2OH)-C-12-C-13) reveal information on the carbon-carbon bond cleavage and the subsequent CO formation. In particular, the methyl fragment (-(CHx)-C-12) produces far less (CO)-C-12 and suggests methyl electroreduction to methane and/or the persistence of -CHx on the Pt surface. (C) 2010 Elsevier Inc. All rights reserved.

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