Enabling Unconventional “Alternating-Distal” N2 Reduction Pathway for Efficient Ammonia Electrosynthesis

Chu Zhang, Qing Wang, Zeyu Li, Hengjie Liu*, Lixiang Zhong*, Jiawei Liu, Zheng Wang, Runjie Wu, Pin Song, Wen Jie Chen, Zeming Qi, Chunshuang Yan, Li Song, Qingyu Yan*, Chade Lv*

*Corresponding author for this work

Research output: Contribution to journalArticlepeer-review

1 Citation (Scopus)

Abstract

The general understanding on the reaction path is that the electrocatalytic N2 reduction follows either individual associative alternating or distal pathways, where efficient N2 activation and selective NH3 production are very challenging. Herein, an unconventional “alternating-distal” pathway was achieved by shifting the “*NHNH2→*NH2NH2” to “*NHNH2→*NH + NH3” step to boost NH3 synthesis with an amorphous CeMnOx electrocatalyst. In this unconventional process, N2 activation was realized through π back donation on the Mn site, while the Mn/Ce dual active sites could regulate the intermediate configurations to avoid the nitrogen-containing by-product formation. Such “alternating-distal” pathway was affirmed by in situ spectroscopic analyses and theoretical calculations. In a neutral media, an average ammonia production rate of 82.8 µg h−1 mg−1 and an outstanding Faradaic efficiency of 37.3% were attained. This work validated an unconventional mechanism in electrocatalytic ammonia synthesis, which might be extended to other catalytic process with multiple possible reaction paths.

Original languageEnglish
Article numbere202502957
JournalAngewandte Chemie - International Edition
Volume64
Issue number18
DOIs
Publication statusPublished - 25 Apr 2025
Externally publishedYes

Keywords

  • Ammonia electrosynthesis
  • Amorphous catalysts
  • Dinitrogen reduction reaction
  • Unconventional mechanism

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