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Platinum-Dysprosium Alloys as Oxygen Electrodes in Alkaline Media: An Experimental and Theoretical Study.

Jadranka MilikićNikola NikolićDiogo M F SantosDaniele MacciòAdriana SacconeMabkhoot AlsaiariMohammad JalalahM FaisalFarid A HarrazYizhao LiAbu Bakr NassrIgor A PastiBiljana Šljukić
Published in: Nanomaterials (Basel, Switzerland) (2022)
Platinum-dysprosium (Pt-Dy) alloys prepared by the arc melting technique are assessed as potential electrodes for the oxygen reduction reaction (ORR) using voltammetry and chronoamperometry in alkaline media. A relatively small change (10 at.%) in the alloy composition brought a notable difference in the alloys' performance for the ORR. Pt 40 Dy 60 electrode, i.e., the electrode with a lower amount of Pt, was identified to have a higher activity towards ORR as evidenced by lower overpotential and higher current densities under identical experimental conditions. Furthermore, DFT calculations point out the unique single-atom-like coordination and electronic structure of Pt atoms in the Pt 40 Dy 60 surface as responsible for enhanced ORR activity compared to the alloy with a higher Pt content. Additionally, Pt-Dy alloys showed activity in the oxygen evolution reaction (OER), with the OER current density lower than that of pure Pt.
Keyphrases
  • single molecule
  • carbon nanotubes
  • molecular dynamics
  • molecular dynamics simulations
  • molecular docking
  • mass spectrometry