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  5. Interfacial assembly of binary atomic metal-Nx sites for high-performance energy devices

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Article
en
2023

Interfacial assembly of binary atomic metal-Nx sites for high-performance energy devices

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en
2023
Vol 14 (1)
Vol. 14
DOI: 10.1038/s41467-023-37529-2

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Lin Gu
Lin Gu

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Zhe Jiang
Xuerui Liu
Xiaozhi Liu
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Abstract

Anion-exchange membrane fuel cells and Zn-air batteries based on non-Pt group metal catalysts typically suffer from sluggish cathodic oxygen reduction. Designing advanced catalyst architectures to improve the catalyst's oxygen reduction activity and boosting the accessible site density by increasing metal loading and site utilization are potential ways to achieve high device performances. Herein, we report an interfacial assembly strategy to achieve binary single-atomic Fe/Co-Nx with high mass loadings through constructing a nanocage structure and concentrating high-density accessible binary single-atomic Fe/Co-Nx sites in a porous shell. The prepared FeCo-NCH features metal loading with a single-atomic distribution as high as 7.9 wt% and an accessible site density of around 7.6 × 1019 sites g-1, surpassing most reported M-Nx catalysts. In anion exchange membrane fuel cells and zinc-air batteries, the FeCo-NCH material delivers peak power densities of 569.0 or 414.5 mW cm-2, 3.4 or 2.8 times higher than control devices assembled with FeCo-NC. These results suggest that the present strategy for promoting catalytic site utilization offers new possibilities for exploring efficient low-cost electrocatalysts to boost the performance of various energy devices.

How to cite this publication

Zhe Jiang, Xuerui Liu, Xiaozhi Liu, Shuang Huang, Ying Liu, Ze‐Cheng Yao, Yun Zhang, Qinghua Zhang, Lin Gu, Lirong Zheng, Li Li, Jianan Zhang, Youjun Fan, Tang Tang, Zhongbin Zhuang, Jin‐Song Hu (2023). Interfacial assembly of binary atomic metal-Nx sites for high-performance energy devices. , 14(1), DOI: https://doi.org/10.1038/s41467-023-37529-2.

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Publication Details

Type

Article

Year

2023

Authors

16

Datasets

0

Total Files

0

Language

en

DOI

https://doi.org/10.1038/s41467-023-37529-2

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