4.8 Article

Engineering highly active oxygen sites in perovskite oxides for stable and efficient oxygen evolution

期刊

APPLIED CATALYSIS B-ENVIRONMENTAL
卷 256, 期 -, 页码 -

出版社

ELSEVIER
DOI: 10.1016/j.apcatb.2019.117817

关键词

Oxygen evolution reaction; Perovskite oxide catalyst; Ba0.5Sr0.5Co0.8Fe0.2O3-delta; F substitution; Highly active oxygen site

资金

  1. National Natural Science Foundation of China [21875224, 21703211, 21503197, 21703212]
  2. Natural Science Foundation of Shandong Province [ZR2019PEM003]

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Perovskite oxides, represented by Ba0.5Sr0.5Co0.8Fe0.2O3-delta (BSCF), with 0 anion partially substituted by F anion are designed. Introduction of F in perovskite lattice initiated the transition of Co(III) and Fe(III) species to lower oxidation states and triggered the surface O anion to be activated to highly oxidative O2-/O-, which is deemed to be efficient active sites for oxygen evolution reaction (OER) catalysis. As a consequence, the F substituted BSCF (F-BSCF) catalyst exhibits outstanding electrocatalytic activity with overpotential of only 280 mV to deliver 10 mA cm(-2) OER, which is among the results for state-of-the-art metal oxide based catalysts. Strikingly, an stable chronoamperometric response prolonged for 100 h and an impressive cycling stability demonstrate its prominent durability, much superior to the commercial IrO2 catalyst. These findings highlight the promising potential of F substitution as an efficient strategy for active site engineering in traditional precious metal-free OER electrocatalysts.

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