Bi/BiFe(oxy)hydroxide for sustainable lattice oxygen-boosted electrocatalysis at a practical high current density

  • Jo, Seunghwan
  • Park, Woon Bae
  • Lee, Keon Beom
  • Choi, Hyeonggeun
  • Lee, Kug-Seung
  • ... Sohn, Jung Inn
  • 외 4명
Citations

WEB OF SCIENCE

17
Citations

SCOPUS

16

초록

Lattice oxygen mechanism (LOM) is a promising pathway to circumvent sluggish oxygen evolution reaction (OER) for efficient water electrolysis. The iron (Fe)-based oxyhydroxide materials for OER catalysts by LOM is well known. However, dissolution of Fe atoms and promoting participation level of lattice oxygen at a practical and extremely high current density (> 1000 mA cm(-2) for oxygen generation) should be resolved for high performance and long-term stability. Here, controlling the reduction of synthetic intermediates allowed amorphous BiFe (oxy)hydroxides with secondary bismuth (Bi) metal (BM/BiFeOxHy) heterogeneous structures with abundant lattice vacancies to be obtained. The BM/BiFeOxHy electrode exhibited low overpotential of 232 and 359 mV at a current density of 10 and 1000 mA cm-2, respectively. Moreover, the balanced hybridization of Bi/Fe-O was demonstrated to result in long-term catalytic stability without the dissolution of Fe atoms up to 1000 h at the extremely high current density of 1000 mA cm-2 with negligible degradation. We further showed that the excellent performance of the newly proposed BM/BiFeOxHy electrocatalysts is attributed to the utilization of Fe/ Bi-O hybridization, the induced amorphous structure, and increased lattice vacancies, which are systematically demonstrated by the electrochemical and physicochemical analysis and theoretical density functional theory (DFT) calculation.

키워드

Oxygen evolution reactionLattice oxygen mechanismBismuth -iron hybridizationPractically high current operationDFT calculationINITIO MOLECULAR-DYNAMICSEVOLUTION REACTIONTRANSITIONKINETICS
제목
Bi/BiFe(oxy)hydroxide for sustainable lattice oxygen-boosted electrocatalysis at a practical high current density
저자
Jo, SeunghwanPark, Woon BaeLee, Keon BeomChoi, HyeonggeunLee, Kug-SeungAhn, DocheonLee, Young-WooSohn, Kee-SunHong, JohnSohn, Jung Inn
DOI
10.1016/j.apcatb.2022.121685
발행일
2022-11
유형
Article
저널명
Applied Catalysis B: Environmental
317
페이지
1 ~ 9