过电位
氧气
双功能
催化作用
析氧
锶
镧
密度泛函理论
材料科学
化学物理
无机化学
化学
物理化学
计算化学
有机化学
电极
生物化学
电化学
作者
Jong Suk Yoo,Rong Xi,Yusu Liu,Alexie M. Kolpak
标识
DOI:10.1021/acscatal.8b00612
摘要
This study demonstrates the importance of considering lattice oxygen participation in understanding trends in the oxygen evolution reaction (OER) on ABO3 (A = lanthanum or strontium, B = transition metal) perovskites. Using density functional theory, we show that the lattice oxygen mechanism (LOM) can lead to higher OER activity than the conventional adsorbate evolving mechanism (AEM) by minimizing the thermodynamically required overpotential. We also show that the OER activity volcano for AEM is universal for all perovskites, whereas that for LOM depends on the identity of the A cation in ABO3. This explains experimental observations that perovskites such as Pr0.5Ba0.5CoO3−δ and SrCoO3−δ show higher OER activities than the conventionally predicted optimum compounds such as LaNiO3 and SrCoO3. Furthermore, we show that LOM is preferred to AEM in achieving bifunctional catalysts capable of promoting both OER and ORR. Using our overall activity volcano, we finally suggest several candidate materials that are predicted to be highly active for OER via LOM.
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