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用于坚固高电容对称超级电容器的共价有机框架衍生的氧/硫掺杂多孔碳

Covalent Organic Framework Derived Oxygen/Sulfur-Doped Porous Carbon for Robust High-Capacitance Symmetric Supercapacitors.

作者信息

Wang Yue, Zhao Jifan, Xing Yuzhu, Dong Yan, Wang Zhong, Hasebe Yasushi, Baughman Ray H

机构信息

School of Chemical Engineering, University of Science and Technology Liaoning, 185 Qianshan Middle Road, High-Tech Zone, Anshan, Liaoning, 114051, China.

Alan G. MacDiarmid NanoTech Institute, University of Texas at Dallas, Richardson, TX, 75080, USA.

出版信息

Chem Asian J. 2025 Jan 2;20(1):e202400930. doi: 10.1002/asia.202400930. Epub 2024 Nov 12.

Abstract

Heteroatom-doped porous carbons (HPCs) have been considered promising electrode materials for supercapacitors due to their improvement of energy density by providing extra pseudocapacity. Covalent organic frameworks (COFs) are obtaining great importance in energy storage because of their designable structure and versatile functionality. Herein, we designed and fabricated oxygen and sulfur dual-doped covalent organic framework (COF) derived HPCs with very high heteroatoms content (up to 25.76 atom%) via a facile coupling reaction. The optimized HPCs exhibit a porous structure with high specific surface area (up to 2835 m g) along with a high specific capacitance (430 F g at 0.5 A g), excellent capacitance retention (96.9 %), and high coulombic efficiency (98.5 %) after 10000 cycles at 5 A g. As electrodes for aqueous symmetric supercapacitors, the HPCs exhibits a high energy density of 60 Wh kg at a 250 W kg power density, excellent cycling stability of capacity retention (82.2 %) and a high coulombic efficiency (92.3 %) after 10000 cycles at 10 A g, indicating attractive application potential in chemical energy storage. This work establishes a promising strategy for preparation of high heteroatom content HPCs using COFs and demonstrates great potential for energy storage/conversion devices.

摘要

杂原子掺杂的多孔碳(HPCs)因其通过提供额外的赝电容提高了能量密度,而被认为是超级电容器有前景的电极材料。共价有机框架(COFs)由于其可设计的结构和多功能性,在能量存储方面正变得越来越重要。在此,我们通过一种简便的偶联反应,设计并制备了具有非常高杂原子含量(高达25.76原子%)的氧和硫双掺杂共价有机框架(COF)衍生的HPCs。优化后的HPCs呈现出具有高比表面积(高达2835 m²/g)的多孔结构,同时在0.5 A/g电流密度下具有高比电容(430 F/g)、优异的电容保持率(96.9%)以及在5 A/g电流密度下经过10000次循环后具有高库仑效率(98.5%)。作为水系对称超级电容器的电极,HPCs在250 W/kg功率密度下具有60 Wh/kg的高能量密度,在10 A/g电流密度下经过10000次循环后具有优异的容量保持循环稳定性(82.2%)和高库仑效率(92.3%),表明其在化学储能方面具有诱人的应用潜力。这项工作建立了一种使用COFs制备高杂原子含量HPCs的有前景的策略,并展示了在能量存储/转换装置方面的巨大潜力。

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