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May 25, 2026Chemistry - A European Journal0 citations

Study on Fe/BZY Cathode Catalysts for Intermediate‐Temperature Electrochemical Ammonia Synthesis Using Solid Phosphate Electrolytes

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STShohei TadaYNYamato NakashimaSHShion Hatazawa

Key Points

  • This research aims to develop a Fe/BZY cathode catalyst for efficient electrochemical ammonia synthesis at intermediate temperatures.
  • Utilized a Cs phosphate-based electrolyte in electrochemical synthesis at approximately 220°C.
  • Developed a Fe/BZY cathode catalyst by combining Fe2O3/BZY in a 1:1 weight ratio and reducing it at 500°C and 800°C.
  • Investigated the impact of K addition on ammonia production rates.
  • Achieved ammonia production rate of 1.3 × 10−10 mol s−1 cm−2 at −1.0 V (vs. OCV).
  • Identified that metallic iron, formed above 700°C, contributes to electronic conduction in the cathode.

Abstract

ABSTRACT Electrochemical NH 3 synthesis was conducted at intermediate temperatures ( ca . 220°C) using a cell with a Cs phosphate–based electrolyte. A Fe/BZY (yttrium‐doped barium zirconate) cathode catalyst was developed by combining Fe 2 O 3 /BZY reduced at 500°C and 800°C in a 1:1 weight ratio, which enabled NH 3 formation. Metallic Fe formed above 700°C was found to serve as an electronic conduction path in the cathode. Furthermore, K addition to the developed cathode enhanced the NH 3 production rate to 1.3 × 10 −10 mol s −1 cm −2 at −1.0 V (vs. OCV). This study demonstrates the first electrochemical NH 3 synthesis using a base‐metal cathode with a solid‐state Cs phosphate electrolyte.

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Cite This Study

Tada et al. (2026) studied this question.

synapsesocial.com/papers/6a13e8680e02ee3982d332d2https://doi.org/10.1002/chem.71163
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