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Research Article | Open Access

Template-Induced Graphitic Nanodomains in Nitrogen-Doped Carbons Enable High-Performance Sodium-Ion Capacitors

Chun Li1,2 ( )Zihan Song2Minliang Liu1Enrico Lepre2Markus Antonietti2Junwu Zhu1Jian Liu3 Yongsheng Fu1( )Nieves López-Salas2 ( )
Key Laboratory for Soft Chemistry and Functional Materials of Ministry of Education, Nanjing University of Science and Technology, Nanjing 210094, China
Colloid Chemistry Department, Max Planck Institute of Colloids and Interfaces, Am Mühlenberg 1, 14476, Potsdam, Germany
School of Engineering, Faculty of Applied Science, University of British Columbia, Kelowna, British Columbia V1V1V7, Canada
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Abstract

Sodium-ion capacitors (SICs) have great potential in energy storage due to their low cost, the abundance of Na, and the potential to deliver high energy and power simultaneously. This article demonstrates a template-assisted method to induce graphitic nanodomains and micro-mesopores into nitrogen-doped carbons. This study elucidates that these graphitic nanodomains are beneficial for Na+ storage. The obtained N-doped carbon (As8Mg) electrode achieved a reversible capacity of 254 mA h g−1 at 0.1 A g−1. Moreover, the As8Mg-based SIC device achieves high combinations of power/energy densities (53 W kg−1 at 224 Wh kg−1 and 10 410 W kg−1 at 51 Wh kg−1) with outstanding cycle stability (99.7% retention over 600 cycles at 0.2 A g−1). Our findings provide insights into optimizing carbon’s microstructure to boost sodium storage in the pseudocapacitive mode.

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Energy & Environmental Materials
Article number: e12695

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Cite this article:
Li C, Song Z, Liu M, et al. Template-Induced Graphitic Nanodomains in Nitrogen-Doped Carbons Enable High-Performance Sodium-Ion Capacitors. Energy & Environmental Materials, 2024, 7(4): e12695. https://doi.org/10.1002/eem2.12695

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Received: 29 June 2023
Revised: 03 September 2023
Published: 22 September 2023
© 2024 The Authors.

This is an open access article under the terms of the Creative Commons Attribution License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.