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  4. FeNi2S4 - A Potent Bifunctional Efficient Electrocatalyst for the Overall Electrochemical Water Splitting in Alkaline Electrolyte
 
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2024
Journal Article
Title

FeNi2S4 - A Potent Bifunctional Efficient Electrocatalyst for the Overall Electrochemical Water Splitting in Alkaline Electrolyte

Abstract
For a carbon-neutral society, the production of hydrogen as a clean fuel through water electrolysis is currently of great interest. Since water electrolysis is a laborious energetic reaction, it requires high energy to maintain efficient and sustainable production of hydrogen. Catalytic electrodes can reduce the required energy and minimize production costs. In this context, herein, a bifunctional electrocatalyst made from iron nickel sulfide (FeNi2S4 [FNS]) for the overall electrochemical water splitting is introduced. Compared to Fe2NiO4 (FNO), FNS shows a significantly improved performance toward both OER and HER in alkaline electrolytes. At the same time, the FNS electrode exhibits high activity toward the overall electrochemical water splitting, achieving a current density of 10 mA cm-2 at 1.63 V, which is favourable compared to previously published nonprecious electrocatalysts for overall water splitting. The long-term chronopotentiometry test reveals an activation followed by a subsequent stable overall cell potential at around 2.12 V for 20 h at 100 mA cm-2.
Author(s)
Hegazy, Mohamed Barakat Zakaria
Ruhr-Universität Bochum  
Zander, Judith
Universität Bayreuth  
Weiss, Morten
Universität Bayreuth  
Simon, Christopher
Universität Bayreuth  
Gerschel, Philipp
Ruhr-Universität Bochum  
Sanden, Sebastian A.
Ruhr-Universität Bochum  
Smialkowski, Mathias
Ruhr-Universität Bochum  
Tetzlaff, David  
Ruhr-Universität Bochum  
Kull, Tobias
Ruhr-Universität Bochum  
Marschall, Roland
Universität Bayreuth  
Apfel, Ulf-Peter  
Ruhr-Universität Bochum  
Journal
Small  
DOI
10.1002/smll.202311627
Language
English
Fraunhofer-Institut für Umwelt-, Sicherheits- und Energietechnik UMSICHT  
Keyword(s)
  • electrochemical behavior

  • spinel bimetallic sulfides

  • stability

  • surface

  • water

  • Elektrolyse

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