Kinetic and mechanistic study of methanol oxidation on a Pt(110) surface in alkaline media

The comparative study of methanol oxidation on a Pt(110) surface was carried out in bicarbonate, carbonate and sodium hydroxide solutions. It was shown that OH − electrosorption precedes the oxide layer formation in sodium hydroxide solution and is coupled by HCO 3 − and CO 3 2− electrosorption in t...

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Published in:Electrochimica acta Vol. 44; no. 6; pp. 1135 - 1145
Main Authors: TRIPKOVIC, A. V, POPOVIC, K. D, MOMCILOVIC, J. D, DRAZIC, D. M
Format: Journal Article Conference Proceeding
Language:English
Published: Oxford Elsevier Ltd 01-01-1998
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Abstract The comparative study of methanol oxidation on a Pt(110) surface was carried out in bicarbonate, carbonate and sodium hydroxide solutions. It was shown that OH − electrosorption precedes the oxide layer formation in sodium hydroxide solution and is coupled by HCO 3 − and CO 3 2− electrosorption in the corresponding media. Adsorbed bicarbonates suppressed the methanol oxidation. The surface activity was correlated to the OH ad species coverage. Coverage with `poisoning species' formed during methanol oxidation is time dependent. The dual path mechanism for methanol oxidation on the Pt(110) surface, as well as for the other low-index planes, was proposed based on the assumptions that HCO ad and OH ad are reactive intermediates and that formate is the reaction product in the main path, while CO 2 is a product of `poisoning species' oxidation in a parallel reaction path.
AbstractList The comparative study of methanol oxidation on a Pt(110) surface was carried out in bicarbonate, carbonate and sodium hydroxide solutions. It was shown that OH super(-) electrosorption precedes the oxide layer formation in sodium hydroxide solution and is coupled by HCO super(-) sub(3) and CO super(2) sub(3) super(-) electrosorption in the corresponding media. Adsorbed bicarbonates suppressed the methanol oxidation. The surface activity was correlated to the OH sub(ad) species coverage. Coverage with 'poisoning species' formed during methanol oxidation is time dependent. The dual path mechanism for methanol oxidation on the Pt(110) surface, as well as for the other low-index planes, was proposed based on the assumptions that HCO sub(ad) and OH sub(ad) are reactive intermediates and that formate is the reaction product in the main path, while CO sub(2) is a product of 'poisoning species' oxidation in a parallel reaction path.
The comparative study of methanol oxidation on a Pt(110) surface was carried out in bicarbonate, carbonate and sodium hydroxide solutions. It was shown that OH − electrosorption precedes the oxide layer formation in sodium hydroxide solution and is coupled by HCO 3 − and CO 3 2− electrosorption in the corresponding media. Adsorbed bicarbonates suppressed the methanol oxidation. The surface activity was correlated to the OH ad species coverage. Coverage with `poisoning species' formed during methanol oxidation is time dependent. The dual path mechanism for methanol oxidation on the Pt(110) surface, as well as for the other low-index planes, was proposed based on the assumptions that HCO ad and OH ad are reactive intermediates and that formate is the reaction product in the main path, while CO 2 is a product of `poisoning species' oxidation in a parallel reaction path.
Author Momčilović, J.D.
Dražić, D.M.
Popović, K.Đ.
Tripković, A.V.
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  givenname: K. D
  surname: POPOVIC
  fullname: POPOVIC, K. D
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  givenname: J. D
  surname: MOMCILOVIC
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  givenname: D. M
  surname: DRAZIC
  fullname: DRAZIC, D. M
  organization: ICTM - Institute of Electrochemistry, University of Belgrade, P.O. Box 815, Belgrade, Yugoslavia
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Issue 6
Keywords Alkaline solutions
Reaction mechanism
OH − ion electrosorption
Methanol oxidation
Pt electrode
Crystal orientation
Basic solution
Electrode poisoning
Transition metal
Experimental study
Primary alcohol
Hydrogencarbonates
Electrodes
Platinum
Sodium Hydroxides
Oxidation
Carbonates
Kinetics
Electrochemical reaction
Organic compounds
Methanol
Language English
License CC BY 4.0
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Elsevier
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Snippet The comparative study of methanol oxidation on a Pt(110) surface was carried out in bicarbonate, carbonate and sodium hydroxide solutions. It was shown that OH...
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SubjectTerms Alkaline solutions
Chemistry
Electrochemistry
Exact sciences and technology
General and physical chemistry
Kinetics and mechanism of reactions
Methanol oxidation
OH − ion electrosorption
Pt electrode
Reaction mechanism
Title Kinetic and mechanistic study of methanol oxidation on a Pt(110) surface in alkaline media
URI https://dx.doi.org/10.1016/S0013-4686(98)00216-3
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