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The Utilization of Metal‐Organic Frameworks and Their Derivatives Composite in Supercapacitor Electrodes.

Authors :
Liu, Qianwen
Li, Ruidong
Li, Jie
Zheng, Bingyue
Song, Shuxin
Chen, Lihua
Li, Tingxi
Ma, Yong
Source :
Chemistry - A European Journal. Mar2024, p1. 26p. 26 Illustrations, 1 Chart.
Publication Year :
2024

Abstract

Up to now, the mainstream adoption of renewable energy has brought about substantial transformations in the electricity and energy sector. This shift has garnered considerable attention within the scientific community. Supercapacitors, known for their exceptional performance metrics like good charge/discharge capability, strong power density, as well as extended cycle longevity, have gained widespread traction across various sectors, including transportation and aviation. Metal‐organic frameworks (MOFs) with unique traits including adaptable structure, highly customizable synthetic methods, and high specific surface area, have emerged as strong candidates for electrode materials. For enhancing the performance, MOFs are commonly compounded with other conducting materials to increase capacitance. This paper provides a detailed analysis of various common preparation strategies and characteristics of MOFs. It summarizes the recent application of MOFs and their derivatives as supercapacitor electrodes alongside other carbon materials, metal compounds, and conductive polymers. Additionally, the challenges encountered by MOFs in the realm of supercapacitor applications are thoroughly discussed. Compared to previous reviews, the content of this paper is more comprehensive, offering readers a deeper understanding of the diverse applications of MOFs. Furthermore, it provides valuable suggestions and guidance for future progress and development in the field of MOFs. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
09476539
Database :
Academic Search Index
Journal :
Chemistry - A European Journal
Publication Type :
Academic Journal
Accession number :
176494194
Full Text :
https://doi.org/10.1002/chem.202400157