Trifunctional electrocatalyst with accurate surface reconstruction for zinc-air batteries and water electrolyzers
- Lingjie Yuan
- Wei-Hsiang Huang
- Zheng Tang
- Su-Yang Hsu
- Yalei Fan
- Beibei Wang
- Mingkai Xu
- Tsung-Yi Chen
- Min-Hsin Yeh
- Jin-Ming Chen
- Zhiwei Hu
- Yinlong Zhu
2026-06-23
Exploiting cost-effective trifunctional electrocatalysts toward oxygen evolution reaction, hydrogen evolution reaction and oxygen reduction reaction is important for sustainable energy conversion and storage devices yet challenging. Here, we report a single-phase trifunctional electrocatalyst Sr 2 CoRuO 6-δ with well-defined super-exchange double perovskite structure, which can efficiently catalyze oxygen evolution, hydrogen evolution and oxygen reduction under alkaline conditions. As an air electrode, Sr 2 CoRuO 6-δ delivers high peak power density of 216 mW cm −2 , high specific capacity of 748 mAh g −1 and long lifespan up to 1000 h for liquid rechargeable zinc-air batteries, as well as broad temperature and deformation adaptability for solid-state flexible zinc-air batteries. Furthermore, an anion exchange membrane water electrolyzer employing Sr 2 CoRuO 6-δ as both cathode and anode requires a cell voltage of 1.90 V at the current density of 1 A cm −2 and shows a stable and rapid response when coupled with fluctuating solar electricity. Combining complementary in-situ and microscopic techniques, spatiotemporal surface reconstruction behavior of Sr 2 CoRuO 6-δ under varied reactions is comprehensively investigated and true active components are identified.