Oxygen Vacancies Induced NiFe-Hydroxide as a Scalable, Efficient, and Stable Electrode for Alkaline Overall Water Splitting

  • Lee, Woong Hee
  • Han, Man Ho
  • Lee, Ung
  • Chae, Keun Hwa
  • Kim, Haesol
  • 외 4명
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초록

The demand for non-noble bifunctional electrocatalysts for overall water splitting was increased for simplifying water-splitting systems and accelerating commercialization. Herein, oxygen vacancy-rich nanoporous nickel foam (NF) electrodes decorated with nanosized NiFe layered double hydroxide are fabricated by a facile and scalable electrochemical treatment using FeCl3 solutions as OER and HER electrocatalysts in an alkaline medium. The roles of Cl- and Fe3+ ions are analyzed by electrochemical and surface-enhanced X-ray analysis techniques. The Cl anions increase the active sites by producing nanopores on the NF surface and promote oxygen vacancies, while the Fe cations enhance the inherent catalytic activity for water oxidation. The FeCl3-treated NF shows enhanced catalytic activities and maintains an overpotential of 520 mV at 100 mA cm(-2) for 150 h in a 10 cm(2) single cell. The results demonstrate that the simple electrochemical treatment is a promising method to produce oxygen vacancy-induced scalable electrodes with large surface areas for various applications.

키워드

NiFe layered double hydroxideoverall water splittingoxygen evolution reactionhydrogen evolution reactionbifunctional catalystNICKEL-BASED ELECTROCATALYSTSHYDROGEN EVOLUTION REACTIONOXIDE CATALYSTSFOAMPERFORMANCEOXIDATIONNANOSTRUCTURESCONTAMINATIONSPECTROSCOPYMORPHOLOGY
제목
Oxygen Vacancies Induced NiFe-Hydroxide as a Scalable, Efficient, and Stable Electrode for Alkaline Overall Water Splitting
저자
Lee, Woong HeeHan, Man HoLee, UngChae, Keun HwaKim, HaesolHwang, Yun JeongMin, Byoung KounChoi, Chang HyuckOh, Hyung-Suk
DOI
10.1021/acssuschemeng.0c04542
발행일
2020-09-21
유형
Article
저널명
ACS Sustainable Chemistry & Engineering
8
37
페이지
14071 ~ 14081