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Published on: August 7, 2018
Ordered Ba2EuIrO6 Double Perovskite With Active Ir─Obri─Eu Unit for Enhanced Electrocatalytic Oxygen Evolution in
Yu Zhu1, Yujie Wang1, Yu Zhou1
1Jiangsu Key Laboratory of New Power Batteries, Jiangsu Collaborative Innovation Center of Biomedical Functional Materials, School of Chemistry and Materials Science, Nanjing Normal University, Nanjing, China.
Abstract:
The design of a low-Ir-loading anode catalyst with high activity and stability is crucial for the proton exchange membrane water electrolysis (PEMWE), yet it remains a formidable challenge. Herein, an ordered Ba2EuIrO6 double perovskite is demonstrated as a promising anode material for catalyzing oxygen evolution reaction (OER) in acid electrolyte. The Ba2EuIrO6 achieves a low overpotential of 250 mV at 10 mA cm-2 and high mass activity with 1.39 A mg-1 toward OER, outperforming BaIrO3 and commercial IrO2 catalysts. It is discovered that the oxygen bridged Ir─Obri─Eu unit in Ba2EuIrO6 plays a critical role as the catalytically active center. In situ spectroscopic studies, isotope labeling measurements and theoretical calculations reveal that the Ir─Obri─Eu units possess strong proton affinity for proton capture from OOH* and OH*, triggering the bridging oxygen-mediated deprotonation mechanism to break traditional scaling relationships during the OER. Furthermore, the incorporation of Eu modulates the Ir dz2 orbital to increase the spin density of adsorbed oxygen, accelerating ─OH attack and reducing the energy barrier for OOH* formation. The Ba2EuIrO6-loading PEMWE delivers over 1.0 A cm-2 at only 1.67 V and operates stably for 350 h at 1.0 A cm-2, demonstrating its good potential for practical applications.

