| Literature DB >> 29777393 |
Abstract
Pt alloy electrocatalysts are susceptible to anion adsorption in the working environment of fuel cells. In this work, the unavoidable bisulfate and sulfate ((bi)sulfate) poisoning of the oxygen reduction reaction (ORR) on a common PtCo nanocatalyst was studied by the rotating disk electrode (RDE) technique, for the first time to the best of our knowledge. The specific activity decreases linearly with the logarithm of (bi)sulfate concentration under various high potentials. This demonstrates that the (bi)sulfate adsorption does not affect the free energy of ORR activation at a given potential. Moreover, it is speculated that these two conditions, the adsorption of one O2 molecule onto two Pt sites and this adsorption as a rate-determining step of ORR reaction, are unlikely to exist simultaneously.Entities:
Keywords: (Bi)sulfate contamination; ORR kinetics; PtCo/C electrocatalyst; Tafel slope; Transfer coefficient
Year: 2018 PMID: 29777393 PMCID: PMC5959827 DOI: 10.1186/s11671-018-2574-6
Source DB: PubMed Journal: Nanoscale Res Lett ISSN: 1556-276X Impact factor: 4.703
Fig. 1a TEM image of the nanocatalyst, scale bar = 50 nm. b Zoomed-up TEM image, scale bar = 20 nm
Fig. 2a CV curve at a sweep rate of 20 mV/s. b LSV curves at various (bi)sulfate ion concentration from 0 to 100 mM
Fig. 3a Effect of (bi)sulfate ion concentration on ORR-specific activity at various potentials for 30 wt.% PtCo at a sweep rate of 5 mV/s. b Fitted D and G of Fig. 2a vs. potential
Fig. 4Illustration of ORR mechanism
Fig. 5Tafel slope of 30 wt.% PtCo at various (bi)sulfate ion concentrations