DOE OSTI · 1987839
Revitalizing interface in protonic ceramic cells by acid etch
Abstract
Protonic ceramic electrochemical cells hold the promise to be operated at intermediate temperatures below 600 °C. Although the high proton conductivity of the bulk electrolyte has been demonstrated, it cannot be fully utilized in electrochemical full cells due to unknown causes. A practical solution is thus urgently needed. Here we showed that it comes from poor contacts between the low-temperature processed oxygen electrode-electrolyte interface. We demonstrated that a simple acid treatment can effectively rejuvenate the high-temperature annealed electrolyte surface, resulting in reactive bonding between the oxygen electrode and the electrolyte and improved electrochemical performance and stability. This enables exceptional protonic ceramic fuel-cell performance down to 350 °C, with peak power densities of 1.6 W cm -2 at 600 °C, 650 mW cm -2 at 450 °C, and 300 mW cm -2 at 350 °C, as well as stable electrolysis operations at large current densities above 3.9 A cm -2 under 1.4 V applied voltage at 600 °C. Furthermore, our work highlights the critical role of interfacial engineering in ceramic electrochemical devices and offers new understanding and practices towards sustainable energy infrastructure.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Bian, Wenjuan, Wu, Wei, Wang, Baoming, Tang, Wei, Zhou, Meng, Jin, Congrui, Ding, Hanping, Fan, Weiwei, Dong, Yanhao, Li, Ju, Ding, Dong. 2022-04-20. Revitalizing interface in protonic ceramic cells by acid etch. https://doi.org/10.1038/s41586-022-04457-y
Cite the original work for its findings. Save a collection to share your selection of sources.