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Cobalt Doped Iron Based Perovskite Catalysts for Efficient Reduction of Nitrate to Ammonia

Wahid Meles Syoum, Liyan Niu, Kai Zhang, Haoran Guo, Jun Song Chen, Tingshuai Li

2025ChemNanoMat7 citationsDOIOpen Access PDF

Abstract

Abstract Electrochemical nitrate reduction reaction (NO 3 RR) has received universal attention to synthesize value‐added ammonia, which requires high‐efficiency catalysts to reduce the reaction barrier. Herein, cobalt doped SrFeO 3 nanofibers (SCFO) with abundant oxygen vacancies via electrospinning technique is proposed to convert nitrate to ammonia. Such catalyst achieves an optimum Faradaic efficiency of 81.5 % and a high NH₃ yield of 16.1 mg h −1 mg −1 cat. in a 0.1 M PBS + 0.1 M NaNO₃ solution at −0.9 V reversible hydrogen electrode (RHE). Moreover, the in‐situ electrochemical test and DFT calculations confirm the potential‐determining step (PDS) for SCFO is *NO−*N with an energy barrier of only 1.28 eV.

Topics & Concepts

CobaltAmmoniaCatalysisNitrateInorganic chemistryPerovskite (structure)Ammonia productionDopingReduction (mathematics)ChemistrySelective catalytic reductionMaterials scienceNuclear chemistryOrganic chemistryMathematicsOptoelectronicsGeometryAmmonia Synthesis and Nitrogen ReductionCaching and Content DeliveryAdvanced Data Storage Technologies