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February 12, 2026Crystals0 citationsOpen Access

Au–NiZn/Ti Electrocatalyst for Efficient Sodium Borohydride Oxidation

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TGTripura GantiABAldona BalčiūnaitėHAHuma Amber

Key Points

  • The research aims to develop an efficient electrocatalyst to enhance the performance of sodium borohydride fuel cells.
  • Developed Au–NiZn/Ti electrocatalyst using electrodeposition and alkaline leaching
  • Transformed zinc-rich nickel coating into a porous dendritic structure on titanium
  • Increased active sites by adding gold crystallites through galvanic displacement
  • Conducted electrochemical tests to assess performance and stability
  • Electrocatalyst showed significant improvement in sodium borohydride oxidation
  • Successfully suppressed unwanted hydrogen evolution side reactions
  • Maintained over 88% of its current density during prolonged operation
  • Poses as a cost-effective and durable option for energy conversion technologies

Abstract

Direct borohydride fuel cells (DBFCs) are emerging as a promising source of clean energy; however, their performance depends heavily on efficient anode catalysts for the oxidation reaction of sodium borohydride (BOR). In this study, we developed and tested the Au–NiZn/Ti electrocatalyst designed to improve the performance of DBFCs. Electrodeposition and alkaline leaching were utilized to transform a zinc-rich nickel coating into a porous dendritic structure on a titanium substrate. By adding a small amount of gold crystallites through galvanic displacement, the surface roughness and the number of active sites available for the reaction were significantly increased. Electrochemical tests confirmed that this modification enhances BOR and effectively suppresses unwanted side reactions like hydrogen evolution. The resulting catalyst demonstrated high stability, maintaining over 88% of its current density during extended operation. Ultimately, the study positions this gold-modified material as a cost-effective and durable solution for clean energy conversion technologies.

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Cite This Study

Ganti et al. (2026) studied this question.

synapsesocial.com/papers/698d6e3c5be6419ac0d53cd1https://doi.org/10.3390/cryst16020129
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