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Peroxide-Driven Nitrogen Fixation Reactions for Energy Storage Applications

  • James Ebenezer
  • , Parthiban Velayudham
  • , Alex Schechter
  • Ariel University
  • University of West Bohemia

Research output: Contribution to journalArticlepeer-review

10 Scopus citations

Abstract

Electrochemical nitrogen fixation offers a sustainable and environmentally friendly alternative to conventional ammonia synthesis, yet it currently faces significant challenges in terms of energy efficiency, catalytic activity, and economic feasibility. Here, this work presents a novel peroxide-mediated dual-step strategy designed to efficiently address these challenges using advanced energy materials. Ruthenium oxide and cobalt phthalocyanine catalysts facilitate simultaneous hydrogen peroxide formation and nitrogen oxidation to nitrate ((Formula presented.)) at an exceptionally low potential of 0.1 V versus RHE, achieving a nitrate yield of 71.1 ± 4.2 µg h¹ cm2 and a Faradaic efficiency (FE) of 2.1 ± 0.4%. Subsequently, the in situ generated (Formula presented.) is electrochemically reduced to ammonia (NH₃) at −0.35 V, delivering an impressive NH₃ yield of 147.2 ± 13.7 µg h¹ cm2 with 13.8 ± 1.7% FE. This combined approach significantly outperforms traditional direct electrochemical nitrogen reduction methods, enhancing ammonia yield ≈30-fold. Furthermore, a detailed techno-economic analysis demonstrates substantial economic advantages, significantly reducing ammonia production costs compared to direct nitrogen reduction. Although this system remains somewhat more expensive than direct nitrate reduction, the latter faces inherent challenges such as limited substrate availability and preprocessing requirements. This work advances sustainable ammonia synthesis by introducing a highly effective catalytic strategy integrated with meaningful energy and economic considerations.

Original languageEnglish
Article number2501583
JournalAdvanced Energy Materials
Volume15
Issue number32
DOIs
StatePublished - 26 Aug 2025
Externally publishedYes

Bibliographical note

Publisher Copyright:
© 2025 The Author(s). Advanced Energy Materials published by Wiley-VCH GmbH.

UN SDGs

This output contributes to the following UN Sustainable Development Goals (SDGs)

  1. SDG 7 - Affordable and Clean Energy
    SDG 7 Affordable and Clean Energy

Keywords

  • air
  • electrochemical nitrate reduction reaction
  • hydrogen peroxide
  • nitrogen oxidation
  • radicals
  • simultaneous
  • two-step ammonia production

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