Highly Active and Stable Al-Doped NiFe Self-Supported Oxygen Evolution Reaction Electrode for Alkaline Water Electrolysis

  • Lee, Byung-Jo
  • Jung, Sang-Mun
  • Yu, Gwonho
  • Kim, Hyun-Yup
  • Kwon, Jaesub
  • 외 6명
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초록

Alkaline water electrolysis (AWE), a predominant technology for large-scale industrial hydrogen production, faces limitations in commercialization owing to the inadequate catalytic activity and stability of oxygen evolution reaction (OER) electrocatalysts. This study introduces a NiFeAl self-supported electrode characterized by high activity and stability for the OER and outlines a rational design strategy for NiFe (oxy)hydroxide-based self-supported electrodes. The introduction of Al, a ternary dopant with relatively low electronegativity and a small ionic radius, into the NiFe electrode effectively controls the adsorption energy of O-intermediates and facilitates the deprotonation of adsorbed OH*, thereby accelerating the OER. Remarkably, the NiFeAl self-supported electrode demonstrates approximately 50% enhanced operational activity (0.71 A cm(-2) at 1.8 V) compared to NiFe alongside exceptional stability (>72 h at 0.6 A cm(-2)) in OER within an AWE single cell. These findings highlight the significant potential of the NiFeAl electrode for application in AWE for efficient, large-scale hydrogen production.

키워드

self-supported electrodeoxygen evolution reactionaluminum dopingelectronic effectalkalinewater electrolyzerLAYERED DOUBLE HYDROXIDESTABILITY CHALLENGESELECTROCATALYSTSEFFICIENTCATALYSISPERFORMANCENANOSHEETSALUMINUMSITES
제목
Highly Active and Stable Al-Doped NiFe Self-Supported Oxygen Evolution Reaction Electrode for Alkaline Water Electrolysis
저자
Lee, Byung-JoJung, Sang-MunYu, GwonhoKim, Hyun-YupKwon, JaesubKim, Kyu-SuKwak, JaeikLee, WooseokMok, Dong HyeonBack, SeoinKim, Yong-Tae
DOI
10.1021/acscatal.4c04393
발행일
2025-01
유형
Article
저널명
ACS Catalysis
15
2
페이지
1123 ~ 1134