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Unraveling Sequential Oxidation Kinetics and Determining Roles of Multi-Cobalt Active Sites on Co<sub>3</sub>O<sub>4</sub> Catalyst for Water Oxidation

178

Citations

52

References

2023

Year

Abstract

The multi-redox mechanism involving multi-sites has great implications to dictate the catalytic water oxidation. Understanding the sequential dynamics of multi-steps in oxygen evolution reaction (OER) cycles on working catalysts is a highly important but challenging issue. Here, using quasi-operando transient absorption (TA) spectroscopy and a typical photosensitization strategy, we succeeded in resolving the sequential oxidation kinetics involving multi-active sites for water oxidation in OER catalytic cycle, with Co<sub>3</sub>O<sub>4</sub> nanoparticles as model catalysts. When OER initiates from fast oxidation of surface Co<sup>2+</sup> ions, both surface Co<sup>2+</sup> and Co<sup>3+</sup> ions are active sites of the multi-cobalt centers for water oxidation. In the sequential kinetics (Co<sup>2+</sup> → Co<sup>3+</sup> → Co<sup>4+</sup>), the key characteristic is fast oxidation and slow consumption for all the cobalt species. Due to this characteristic, the Co<sup>4+</sup> intermediate distribution plays a determining role in OER activity and results in the slow overall OER kinetics. These insights shed light on the kinetic understanding of water oxidation on heterogeneous catalysts with multi-sites.

References

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