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Metal–Organic Framework Supercapacitors: Challenges and Opportunities

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Peer-reviewed

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Abstract

Supercapacitors offer superior energy storage capabilities than traditional capacitors, making them useful for applications such as electric vehicles and rapid large-scale energy storage. The energy storage performance of these devices relies on electrical double-layer capacitance and/or pseudo-capacitance from rapid reversible redox reactions. Metal-organic frameworks (MOFs) have recently emerged as a new class of electrode materials with promising supercapacitor performances and capacitances that exceed those of traditional materials. However, our comparison of the supercapacitor performance of a porous carbon and a state-of-the-art MOF highlights a number of challenges for MOF supercapacitors, including low potential windows, limited cycle lifetimes, and poor rate performances. We propose that the well-defined and tuneable chemical structures of MOFs present a number of avenues for improving supercapacitor performance. We also discuss recent experimental and theoretical work on charging mechanisms in MOF-based supercapacitors, and find a need for more studies that elucidate the charge storage and degradation mechanisms. Ultimately, a deeper understanding will lead to design principles for realising improved supercapacitor energy storage devices

Description

Journal Title

Advanced Functional Materials

Conference Name

Journal ISSN

1616-301X
1616-3028

Volume Title

Publisher

Wiley

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Except where otherwised noted, this item's license is described as Attribution 4.0 International
Sponsorship
Horizon Europe UKRI Underwrite ERC (EP/X042693/1)
MRC (MR/T043024/1)
National Research Foundation of Korea (NRF) funded by Ministry of Science and ICT (2018M3D1A1058793). Oppenheimer Studentship (School of the Physical Sciences, Cambridge). Walters-Kundert Studentship (Selwyn College, Cambridge).

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