4.1 Article

De-Alloyed PtCu/C Catalysts of Oxygen Electroreduction

Journal

RUSSIAN JOURNAL OF ELECTROCHEMISTRY
Volume 55, Issue 12, Pages 1258-1268

Publisher

PLEIADES PUBLISHING INC
DOI: 10.1134/S1023193519120085

Keywords

electrocatalysts; core-shell nanoparticles; bimetallic nanoparticles; catalyst posttreatment; acidic treatment; oxygen reduction reaction; electrochemically active surface area

Funding

  1. Russian Scientific Foundation [16-19-10115, AAAA-19-119061890019-5]

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Platinum-containing bimetallic nanoparticles manifest high functional characteristics as electrocatalysts. To use PtCu/C catalysts in low-temperature fuel cells, it is necessary to minimize selective copper dissolution, as copper cations can pollute the polymer membrane and decrease its proton conductivity. The work determines the composition, measures the electrochemically active surface area, and studies the electrochemical behavior of PtCu/C catalysts containing nanoparticles with a core-shell structure in the initial state (as-prepared) and after pretreatment in solutions of different acids. The comparative determination of catalyst activity in an electrochemical cell and their testing in a membrane-electrode assembly of fuel cells showed that pretreated PtCu/C materials with a much better stability as compared to Pt/C were also noninferior to the latter as regards their activity in the oxygen electroreduction reaction.

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