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  5. Precise Control of Active Site Configurations in High‐Entropy Intermetallic Compounds for Electrocatalytic Nitrate Reduction to Ammonia

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Article
en
2025

Precise Control of Active Site Configurations in High‐Entropy Intermetallic Compounds for Electrocatalytic Nitrate Reduction to Ammonia

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en
2025
Vol 64 (29)
Vol. 64
DOI: 10.1002/anie.202502333

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Lin Gu
Lin Gu

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Xiao Ma
Chaoqun Ma
Jing Xia
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Abstract

High-entropy alloys (HEAs), composed of five or more elements in similar proportions, exhibit unique physicochemical properties, but their disordered atomic structures pose challenges in the precise control of active sites. In contrast, high-entropy intermetallic compounds (HEIs), with an ordered atomic arrangement and well-defined atomic positions, provide clear active site configurations, making them particularly advantageous for complex electrocatalytic reactions like the nitrate reduction reaction (NO3RR). Herein, we present the FeCoNiGeSb-HEI with precisely controlled elemental distributions, leading to the formation of distinct active sites. The FeCoNiGeSb-HEI catalyst exhibits high activity for NO3RR, achieving a high NH3 yield rate of 7.5 mg h-1 cm-2 at -0.4 V and a faradaic efficiency (FE) of 97.6% at -0.30 V, along with excellent stability. Density functional theory (DFT) calculations and experimental results reveal that Co sites act as key active sites, whereas Fe and Ni atoms contribute a synergistic effect. Additionally, the FeCoNiGeSb-HEI catalyst functions in a bifunctional system coupling NH3 production with the glycerol oxidation reaction (GOR), achieving an NH3 yield of 9.8 mg h-1 cm-2 at 1.8 V, maintaining stable performance for 100 h.

How to cite this publication

Xiao Ma, Chaoqun Ma, Jing Xia, Sumei Han, Huaifang Zhang, Caihong He, Fukai Feng, Gang Lin, Wenbin Cao, Lin Gu, Xiangmin Meng, Lijie Zhu, Haiqing Yin, Qipeng Lu (2025). Precise Control of Active Site Configurations in High‐Entropy Intermetallic Compounds for Electrocatalytic Nitrate Reduction to Ammonia. , 64(29), DOI: https://doi.org/10.1002/anie.202502333.

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Publication Details

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Article

Year

2025

Authors

14

Datasets

0

Total Files

0

Language

en

DOI

https://doi.org/10.1002/anie.202502333

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