Abstract

The structural characteristics and electrochemical behavior of electrocatalysts obtained by liquid-phase synthesis of Pt and Pt-Cu nanoparticles on microparticles of an N-doped carbon support have been studied. A comparative assessment of the active surface area, catalytic activity in the oxygen reduction reaction and resistance to degradation of the obtained Pt/C-N and PtCu/C-N catalysts, as well as commercial Pt/C analogue, has been carried out.

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