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用于高能量和功率密度钠离子电池的氮杂共价有机框架实现卓越的钠离子存储

Exceptional Sodium-Ion Storage by an Aza-Covalent Organic Framework for High Energy and Power Density Sodium-Ion Batteries.

作者信息

Shehab Mohammad K, Weeraratne K Shamara, Huang Tony, Lao Ka Un, El-Kaderi Hani M

机构信息

Department of Chemistry, Virginia Commonwealth University, Richmond, Virginia 23284, United States.

出版信息

ACS Appl Mater Interfaces. 2021 Apr 7;13(13):15083-15091. doi: 10.1021/acsami.0c20915. Epub 2021 Mar 22.

Abstract

Redox-active covalent organic frameworks (COFs) are a new class of material with the potential to transform electrochemical energy storage due to the well-defined porosity and readily accessible redox-active sites of COFs. However, combining both high specific capacity and energy density in COF-based batteries remains a considerable challenge. Herein, we demonstrate the exceptional performance of Aza-COF in rechargeable sodium-ion batteries (SIBs). Aza-COF is a microporous 2D COF synthesized from hexaketocyclohexane and 1,2,4,5-benzenetetramine by a condensation reaction, which affords phenazine-decorated channels and a theoretical specific capacity of 603 mA h g. The Aza-COF-based electrode exhibits an exceptional average specific capacity (550 mA h g), energy density (492 W h kg) at 0.1 C, and power density (1182 W kg) at 40 C. The high capacity and energy density are attributed to swift surface-controlled redox processes and rapid sodium-ion diffusion inside the porous electrode. Rate capability studies showed that the battery also performs well at high current rates: 1 C (363 mA h g), 5 C (232 mA h g), 10 C (161 mA h g), and 20 C (103 mA h g). In addition, the long-term cycling stability test revealed very good capacity retention (87% at 5 C) and Coulombic efficiencies near unity over 500 cycles.

摘要

氧化还原活性共价有机框架材料(COFs)是一类新型材料,由于其具有明确的孔隙率和易于接近的氧化还原活性位点,具有改变电化学储能的潜力。然而,在基于COF的电池中同时实现高比容量和能量密度仍然是一个巨大的挑战。在此,我们展示了氮杂COF在可充电钠离子电池(SIBs)中的优异性能。氮杂COF是一种通过缩合反应由六酮环己烷和1,2,4,5-苯四胺合成的微孔二维COF,它提供了吩嗪修饰的通道,理论比容量为603 mA h g。基于氮杂COF的电极在0.1 C时表现出优异的平均比容量(550 mA h g)、能量密度(492 W h kg)和在40 C时的功率密度(1182 W kg)。高容量和能量密度归因于快速的表面控制氧化还原过程以及多孔电极内快速的钠离子扩散。倍率性能研究表明,该电池在高电流倍率下也表现良好:1 C(363 mA h g)、5 C(232 mA h g)、10 C(161 mA h g)和20 C(103 mA h g)。此外,长期循环稳定性测试显示出非常好的容量保持率(5 C时为87%)以及在500次循环中接近1的库仑效率。

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