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Post-synthetic Modification of Covalent Organic Frameworks Through In situ Polymerization of Aniline for Enhanced Capacitive Energy Storage

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Journal Chem Asian J
Specialty Chemistry
Date 2020 Nov 27
PMID 33245204
Citations 3
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Abstract

Covalent organic frameworks (COFs) having layered architecture with open nanochannels and high specific surface area are promising candidates for energy storage. However, the low electrical conductivity of two-dimensional COFs often limits their scope in energy storage applications. The conductivity of COFs can be enhanced through post-synthetic modification with conducting polymers. Herein, we developed polyaniline (PANI) modified triazine-based COFs via in situ polymerization of aniline within the porous frameworks. The composite materials showed high conductivity of 1.4-1.9×10  S cm at room temperature with a 20-fold enhancement of the specific capacitance than the pristine frameworks. The fabricated supercapacitor exhibited a high energy density of 24.4 W h kg and a power density of 200 W kg at 0.5 A g current density. Moreover, the device fabricated using the conducting polymer-triazine COF composite could light up a green light-emitting diode for 1 min after being charged for 10 s.

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