Dynamic active-site generation of atomic iridium stabilized on nanoporous metal phosphides for water oxidation

Publication date

2020-06-01

Authors

Jiang, Kang
Luo, Min
Peng, Ming
Yu, Yaqian
Lu, Ying Rui
Chan, Ting Shan
Liu, Pan
de Groot, Frank M. F.ISNI 0000000114483312
Tan, Yongwen

Editors

Advisors

Supervisors

Document Type

Article
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License

cc_by

Abstract

Designing efficient single-atom catalysts (SACs) for oxygen evolution reaction (OER) is critical for water-splitting. However, the self-reconstruction of isolated active sites during OER not only influences the catalytic activity, but also limits the understanding of structure-property relationships. Here, we utilize a self-reconstruction strategy to prepare a SAC with isolated iridium anchored on oxyhydroxides, which exhibits high catalytic OER performance with low overpotential and small Tafel slope, superior to the IrO2. Operando X-ray absorption spectroscopy studies in combination with theory calculations indicate that the isolated iridium sites undergo a deprotonation process to form the multiple active sites during OER, promoting the O–O coupling. The isolated iridium sites are revealed to remain dispersed due to the support effect during OER. This work not only affords the rational design strategy of OER SACs at the atomic scale, but also provides the fundamental insights of the operando OER mechanism for highly active OER SACs.

Keywords

General Chemistry, General Biochemistry,Genetics and Molecular Biology, General Physics and Astronomy, SDG 7 - Affordable and Clean Energy

Citation

Jiang, K, Luo, M, Peng, M, Yu, Y, Lu, Y R, Chan, T S, Liu, P, de Groot, F M F & Tan, Y 2020, 'Dynamic active-site generation of atomic iridium stabilized on nanoporous metal phosphides for water oxidation', Nature Communications, vol. 11, no. 1, 2701, pp. 1-9. https://doi.org/10.1038/s41467-020-16558-1