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基于二维卟啉的共价有机框架/g-CN复合材料作为高性能超级电容器

Two-Dimensional Porphyrin-Based Covalent Organic Frameworks/g-CN Composites as High-Performance Supercapacitor.

作者信息

Deka Rakesh, Prakash Kamal, Mobin Shaikh M

机构信息

Department of Chemistry, Indian Institute of Technology Indore, Khandwa Road, Simrol, Indore 453552, India.

Center for Electric Vehicle and Intelligent Transport System (CEVITS), Indian Institute of Technology Indore, Khandwa Road, Simrol, Indore 453552, India.

出版信息

ACS Appl Mater Interfaces. 2024 Dec 11;16(49):68487-68497. doi: 10.1021/acsami.4c17272. Epub 2024 Nov 25.

DOI:10.1021/acsami.4c17272
PMID:39586015
Abstract

Covalent organic frameworks (COFs) with high porosity and redox-active properties have been advanced as electrode materials for energy storage systems, although poor electron conductivity and inaccessibility of active pore sites hinder their performance as electrode material for supercapacitor application. Thus, incorporation of a COF with various conductive materials can be an effective strategy to improve their electrochemical performances for supercapacitors. Herein, we report the synthesis of POR-COF@g-CN composites by fabricating a porphyrin-based COF on g-CN via in situ solvothermal conditions. A series of COF composites, known as POR-COF@g-CN-X, were prepared by incorporating different ratios of COF (X = 10%, 20%, 30%, and 40%) into g-CN and investigated as electrode materials for supercapacitor performance. The optimized COF composite (POR-COF@g-CN-30) achieved a specific capacitance of 788 F g at 4 A g, much higher compared to pristine COF. Further, the asymmetric device assembled using POR-COF@g-CN-30 demonstrated a high energy density of 24.4 Wh kg at a power density of 1152 W kg and a long-term cycling life of 74% capacity retention after 6000 cycles. Our work highlights the scope of COF-based composites as active electrode materials for highly efficient supercapacitor performance.

摘要

具有高孔隙率和氧化还原活性的共价有机框架(COF)已被开发用作储能系统的电极材料,尽管电子导电性差和活性孔位点难以接近阻碍了它们作为超级电容器应用电极材料的性能。因此,将COF与各种导电材料结合可以是提高其超级电容器电化学性能的有效策略。在此,我们报道了通过原位溶剂热条件在g-CN上制备基于卟啉的COF来合成POR-COF@g-CN复合材料。通过将不同比例的COF(X = 10%、20%、30%和40%)掺入g-CN中制备了一系列称为POR-COF@g-CN-X的COF复合材料,并将其作为超级电容器性能的电极材料进行了研究。优化后的COF复合材料(POR-COF@g-CN-30)在4 A g时实现了788 F g的比电容,与原始COF相比要高得多。此外,使用POR-COF@g-CN-30组装的不对称器件在1152 W kg的功率密度下表现出24.4 Wh kg的高能量密度,并且在6000次循环后具有74%的容量保持率的长期循环寿命。我们的工作突出了基于COF的复合材料作为高效超级电容器性能的活性电极材料的应用前景。

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