The electrooxidation mechanism of formic acid on platinum and on lead ad-atoms modified platinum studied with the kinetic isotope effect

Kinetics and mechanism of formic acid (FA) oxidation on platinum and upd-lead ad-atoms modified platinum electrodes have been studied using unlabelled and deuterated compounds. Poisoning of the electrode surface by CO-like species was prevented by suppression of dissociative chemisorption of FA due...

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Veröffentlicht in:Journal of power sources 2014-04, Vol.251, p.30-37
Hauptverfasser: Bełtowska-Brzezinska, M., Łuczak, T., Stelmach, J., Holze, R.
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Sprache:eng
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Zusammenfassung:Kinetics and mechanism of formic acid (FA) oxidation on platinum and upd-lead ad-atoms modified platinum electrodes have been studied using unlabelled and deuterated compounds. Poisoning of the electrode surface by CO-like species was prevented by suppression of dissociative chemisorption of FA due to a fast competitive underpotential deposition of lead ad-atoms on the Pt surface from an acidic solution containing Pb2+ cations. Modification of the Pt electrode with upd lead induced a catalytic effect in the direct electrooxidation of physisorbed FA to CO2. With increasing degree of H/D substitution, the rate of this reaction decreased in the order: HCOOH > DCOOH ≥ HCOOD > DCOOD. HCOOH was oxidized 8.5-times faster on a Pt/Pb electrode than DCOOD. This primary kinetic isotope effect proves that the C–H- and O–H-bonds are simultaneously cleaved in the rate determining step. A secondary kinetic isotope effect was found in the dissociative chemisorption of FA in the hydrogen adsorption–desorption range on a bare Pt electrode after H/D exchange in the C–H bond, wherein the influence of deuterium substitution in the O–H group was negligibly small. Thus the C–H bond cleavage is accompanied by the C–OH and not the O–H bond split in the FA decomposition, producing CO-like species on the Pt surface sites. •Insight into mechanism of formic acid oxidation on Pt and Pt/Pb electrodes with kinetic isotope effect.•Catalytic synergistic effect in direct oxidation of formic acid to CO2 induced by upd-lead.•Suppression of strongly bound CO-like species on upd-lead ad-atoms modified platinum electrode.•The optimal conditions for monitoring of FA in acidic solution containing Pb2+ cations were specified.
ISSN:0378-7753
1873-2755
DOI:10.1016/j.jpowsour.2013.11.027