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Oleylamine Aging of PtNi Nanoparticles Giving Enhanced Functionality for the Oxygen Reduction Reaction.

Gerard M LetebaYi-Chi WangThomas J A SlaterRongsheng CaiConor ByrneChristopher P RaceDavid R G MitchellPieter B J LevecqueNeil P YoungStuart M HolmesAlex S WaltonAngus I KirklandSarah J HaighCandace I Lang
Published in: Nano letters (2021)
We report a rapid solution-phase strategy to synthesize alloyed PtNi nanoparticles which demonstrate outstanding functionality for the oxygen reduction reaction (ORR). This one-pot coreduction colloidal synthesis results in a monodisperse population of single-crystal nanoparticles of rhombic dodecahedral morphology with Pt-enriched edges and compositions close to Pt1Ni2. We use nanoscale 3D compositional analysis to reveal for the first time that oleylamine (OAm)-aging of the rhombic dodecahedral Pt1Ni2 particles results in Ni leaching from surface facets, producing aged particles with concave faceting, an exceptionally high surface area, and a composition of Pt2Ni1. We show that the modified atomic nanostructures catalytically outperform the original PtNi rhombic dodecahedral particles by more than two-fold and also yield improved cycling durability. Their functionality for the ORR far exceeds commercially available Pt/C nanoparticle electrocatalysts, both in terms of mass-specific activities (up to a 25-fold increase) and intrinsic area-specific activities (up to a 27-fold increase).
Keyphrases
  • metal organic framework
  • transition metal
  • heavy metals
  • genome wide
  • dna methylation
  • risk assessment
  • mass spectrometry
  • municipal solid waste
  • single molecule
  • sewage sludge