Designing the nano-scale architecture of the air electrode for high-performance and robust reversible solid oxide cells

  • Rehman, Saeed Ur
  • Hassan, Muhammad Haseeb
  • Kim, Hye-Sung
  • Song, Rak-Hyun
  • Lim, Tak-Hyoung
  • ... Lee, Jong-Won
  • 외 4명
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초록

Herein, an innovative La0.6Sr0.4CoO3 (LSC) nanostructured air electrode, having superior catalytic activity and exceptional robustness against critical interfacial delamination-induced degradation, is reported. A ∼50 nm thin LSC air electrode decorated onto a porosity graded Gd0.1Ce0.9O2 backbone via ultrasonic-assisted infiltration showed significantly flourished ORR and OER kinetics with prolific electrochemical performance compared to the cell with conventional LSC air electrode. The SOC showed maximum power density of 2.24 W cm−2 in the fuel cell mode and maximum current density of 4.57 A cm−2 at an operating voltage of 1.6 V in the electrolysis mode at 750 °C. Results of the reversible cycling and galvanostatic stability tests indicate excellent durability, which is attributed to the elimination of detrimental O2 pressure evolved at the air electrode/electrolyte interface. Sited among the highest performances till date, this study provides a realization of a tremendously durable SOC design for the production of green hydrogen and electricity.

키워드

Air electrodeElectrolysisGreen hydrogenNanofabricationSolid oxide cellCOMPOSITE OXYGEN ELECTRODESFUEL-CELLELECTROCHEMICAL STABILITYRAMAN-SPECTROSCOPYREDUCTIONCATHODEYSZINFILTRATIONDELAMINATIONMECHANISM
제목
Designing the nano-scale architecture of the air electrode for high-performance and robust reversible solid oxide cells
저자
Rehman, Saeed UrHassan, Muhammad HaseebKim, Hye-SungSong, Rak-HyunLim, Tak-HyoungHong, Jong-EunJoh, Dong-WooPark, Seok-JooLee, Jong-WonLee, Seung-Bok
DOI
10.1016/j.apcatb.2023.122784
발행일
2023-09
유형
Article
저널명
Applied Catalysis B: Environmental
333
페이지
1 ~ 11

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