Supramolecular-mediated high nitrogen doping hierarchical porous carbon cathodes with multi-physi/chemisorption sites for Zn-ion hybrid supercapacitors

Yuchen Li, Muqi Chang, Penghao Chai, Qiulong Guan, Jianghuan Li, Lijie Li, Lixia Bao, Wensheng Deng*, Jiong Peng*, Xin Li*

*此作品的通讯作者

科研成果: 期刊稿件文章同行评审

4 引用 (Scopus)

摘要

Enhancing Zn2+ storage necessitates the meticulous design of carbon-based cathodes with specific attributes, notably substantial nitrogen doping and high surface area. However, synthesizing materials that embody both advantages persists as a considerable obstacle. Herein, we introduce a strategy for synthesizing self-assembled supramolecular crystal framework carbonization-activated high nitrogen doping hierarchical porous carbon (H-NPC) with a specific surface area of 2202.96 m2 g⁻1 and a nitrogen doping level of 12.45 at.%, providing a plethora of physical and chemical adsorption sites for Zn2+ storage. The resulting H-NPC exhibits a notable capacity of 256.7 mAh g−1 at 0.5 A g−1, achieving a maximum energy density of 213 Wh kg−1 at 450 W kg−1 power density, alongside an extended service life with 91.4 % capacity retention over 10,000 cycles. Density functional theory calculations reveal the role of high nitrogen doping in enhancing the reversible adsorption/desorption of Zn2+, augmenting H-NPC's electrical conductivity, electron density at zincophilic active sites, and reducing the energy barrier for Zn2+ adsorption. This study emphasizes the crucial role of incorporating large specific surface areas and abundant nitrogen atoms into carbon electrodes with the aim of innovating high-efficiency aqueous zinc ion capacitor systems and provides a novel idea for designing new carbon-based materials.

源语言英语
文章编号236313
期刊Journal of Power Sources
631
DOI
出版状态已出版 - 1 3月 2025

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