In Situ Phase Separation-Induced Self-Healing Catalyst for Efficient Direct Seawater Electrolysis

  • Zhang, Yihan
  • Jeong, Seulgi
  • Son, Eunbin
  • Choi, Yunseong
  • Lee, Sangjin
  • 외 2명
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초록

Direct seawater electrolysis technology for sustainable hydrogen production has garnered significant attention, owing to its abundant resource supply and economic potential. However, the complex composition and high chloride concentration of seawater have hindered its practical implementation. In this study, we report an in situ-synthesized dual-phase electrocatalyst (HPS-NiMo), comprising an amorphous phosphide protective outer phase and a crystalline alloy inner phase with supplementary sulfur active sites, to improve the kinetics of direct seawater electrolysis. The HPS-NiMo exhibits long-term stability, remaining stable for periods exceeding 120 h at 200 mA cm-2; moreover, it lowers the required operating voltage to similar to 1.8 V in natural seawater. The chlorine chemistry, corrosion during direct natural seawater electrolysis, and mechanism behind the high-performing catalysts are discussed. We also investigated the possibility of recovering the anode precipitates, which inevitably occurs during seawater electrolysis.

키워드

amorphous phasecorrosionresistancedirectseawater electrolysisinterface engineeringprecipitatewaste recoverHIGHLY EFFICIENTWATERNANOSHEETSEVOLUTIONOXIDATIONFUTUREENERGY
제목
In Situ Phase Separation-Induced Self-Healing Catalyst for Efficient Direct Seawater Electrolysis
저자
Zhang, YihanJeong, SeulgiSon, EunbinChoi, YunseongLee, SangjinBaik, Jeong MinPark, Hyesung
DOI
10.1021/acsnano.4c06220
발행일
2024-06-12
유형
Article
저널명
ACS Nano
18
25
페이지
16312 ~ 16323