Activity-Stability Trends for the Oxygen Evolution Reaction on Monometallic Oxides in Acidic Environments

  • Danilovic, Nemanja; 
  • Subbaraman, Ramachandran; 
  • Chang, Kee-Chul; 
  • Chang, Seo Hyoung; 
  • Kang, Yijin J.; 
  • 외 7명
Citations

WEB OF SCIENCE

707
Citations

SCOPUS

726

초록

In the present study, we used a surface-science approach to establish a functional link between activity and stability of monometallic oxides during the OER in acidic media. We found that the most active oxides (Au << Pt < Ir < Ru << Os) are, in fact, the least stable (Au >> Pt > Ir > Ru >> Os) materials. We suggest that the relationships between stability and activity are controlled by both the nobility of oxides as well as by the density of surface defects. This functionality is governed by the nature of metal cations and the potential transformation of a stable metal cation with a valence state of n = +4 to unstable metal cation with n > +4. A practical consequence of such a close relationship between activity and stability is that the best materials for the OER should balance stability and activity in such a way that the dissolution rate is neither too fast nor too slow.

키워드

Electrochemistry; monometallic oxides; Oxygen evolution reaction; X-RAY-ABSORPTION; ELECTRODE MATERIAL; RUTHENIUM DIOXIDE; WATER; ELECTROCATALYSIS; VALENCY; IRIDIUM
제목
Activity-Stability Trends for the Oxygen Evolution Reaction on Monometallic Oxides in Acidic Environments
저자
Danilovic, Nemanja; Subbaraman, Ramachandran; Chang, Kee-Chul; Chang, Seo Hyoung; Kang, Yijin J.; Snyder, Joshua; Paulikas, Arvydas P.; Strmcnik, Dusan; Kim, Yong-Tae; Myers, Deborah; Stamenkovic, Vojislav R.; Markovic, Nenad M.
DOI
10.1021/jz501061n
발행일
2014-07
유형
Article
저널명
The Journal of Physical Chemistry Letters
권
5
호
14
페이지
2474 ~ 2478