Related Experiment Video
Updated: Oct 2, 2026

Synthesis of Metal Nanoparticles Supported on Carbon Nanotube with Doped Co and N Atoms and its Catalytic Applications in Hydrogen Production
Published on: December 6, 2021
Cobalt-Based Electrocatalysts for Nitrate/Nitrite Reduction to Ammonia: Multiscale Design of Active Sites,
Yanjun Han1,2, Zhi Wang1,2, Haixia Zhong1,2
1Key Laboratory of Rare Earth, Changchun Institute of Applied Chemistry, Chinese Academy of Sciences, Changchun, China.
Abstract:
Ammonia has recently emerged as a promising energy carrier in achieving carbon neutrality. Electrocatalytic nitrate/nitrite reduction reaction (NOx -RR) to ammonia offers a compelling alternative to the Haber-Bosch process, providing a viable pathway toward ambient ammonia production while simultaneously remediating environmental pollutants. However, balancing the adsorption and activation of reactant and stimulating the hydrogenation of key intermediates remain challenging during this complicated reaction, limiting the selectivity and ammonia yield rates. In this context, cobalt (Co)-based electrocatalysts have emerged as one of the most promising catalysts for NOx - reduction owing to their versatile electronic structures and tunable active centers. In this review, we summarize recent progress of advanced Co-based electrocatalysts in NOx -RR, introducing the correlation between electrochemical catalytic activity and their structural characteristics, with an emphasis on multiscale design of active centers, structural frameworks, and interfacial microenvironments. Additionally, we propose solutions to address the current challenges toward the practical ammonia synthesis. This review will provide valuable insights for the rational design of efficient and sustainable electrocatalysts for NOx - to ammonia.
More Related Videos
10:57Synthesis and Performance Characterizations of Transition Metal Single Atom Catalyst for Electrochemical CO2 Reduction
Published on: April 10, 2018
10:15Solar-Driven Electrochemical Green Fuel Production from CO2 and Water Using Ti3C2Tx MXene-Supported CuZn and NiCo Catalysts
Published on: November 7, 2025
Related Concept Videos
Heterogeneous Catalysis
Catalysis