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High-rate, high-capacity electrochemical energy storage in hydrogen-bonded fused aromatics

Authors :
Chen, Tianyang
Banda, Harish
Yang, Luming
Li, Jian
Zhang, Yugang
Parenti, Riccardo
Dincă, Mircea
Chen, Tianyang
Banda, Harish
Yang, Luming
Li, Jian
Zhang, Yugang
Parenti, Riccardo
Dincă, Mircea
Publication Year :
2023

Abstract

Designing materials for electrochemical energy storage with short charging times and high charge capacities is a longstanding challenge. The fundamental difficulty lies in incorporating a high density of redox couples into a stable material that can efficiently conduct both ions and electrons. We report all-organic, fused aromatic materials that store up to 310 mAh g−1 and charge in as little as 33 s. This performance stems from abundant quinone/imine functionalities that decorate an extended aromatic backbone, act as redox-active sites, engage in hydrogen bonding, and enable a delocalized high-rate energy storage with stability upon cycling. The extended conjugation and hydrogen-bonding-assisted bulk charge storage contrast with the surface-confined or hydration-dependent behavior of traditional inorganic electrodes.<br />QC 20230713

Details

Database :
OAIster
Notes :
English
Publication Type :
Electronic Resource
Accession number :
edsoai.on1400070989
Document Type :
Electronic Resource
Full Text :
https://doi.org/10.1016.j.joule.2023.03.011