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February 22, 2026ACS Applied Energy Materials0 citations

Evaluating Ru-RuO 2 @BN as a Bifunctional Electrocatalyst for the Nitrogen Reduction Reaction and the Hydrogen Evolution Reaction

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MSMitu SharmaLSLeela SotskyRPR. Petti

Key Points

  • The research aims to evaluate the effectiveness of a Ru–RuO2@BN catalyst for the nitrogen reduction and hydrogen evolution reactions.
  • Synthesis of Ru–RuO2-decorated boron nitride catalyst
  • Evaluation of nitrogen reduction reaction activity
  • Measurement of ammonia formation and Faradaic efficiency at −0.5 V in 0.1 M HCl
  • Assessment of hydrogen evolution reaction activity in the same conditions.
  • Achieved ammonia formation rate of 16.8 μg h–1 mg–1 at −0.5 V
  • Demonstrated a Faradaic efficiency of 52.9% for nitrogen reduction
  • The hydrogen evolution reaction demonstrated poor activity and high overpotential in the same environment.

Abstract

Electrochemical approaches toward clean energy production have been the focus of significant attention. The nitrogen (N2) reduction reaction (NRR) and the hydrogen (H2) evolution reaction (HER) offer a promising method for producing NH3 and H2, respectively. Nevertheless, practical obstacles that must be overcome in creating optimal catalysts are the sluggish kinetics and low selectivity of NRR and HER. Herein, we report on the synthesis of a Ru–RuO2-decorated boron nitride (BN) catalyst that shows excellent activity toward NRR. A rate of NH3 formation (VNH3) of 16.8 μg h–1 mg–1 and a corresponding Faradaic efficiency (FE) of 52.9% were noted at a potential of −0.5 V in 0.1 M HCl. However, the HER activity of Ru–RuO2@BN was found to be highly suppressed in 0.1 M HCl and did not yield a reasonable overpotential value. Thus, the capability of this material toward NRR suggests its viability as a promising catalyst for clean NH3 production.

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Cite This Study

Sharma et al. (2026) studied this question.

synapsesocial.com/papers/699a9d14482488d673cd2b61https://doi.org/10.1021/acsaem.5c03780
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