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Title: Regulating the interfacial chemistry enables fast-kinetics hard carbon anodes for potassium ion batteries
Authors: Yu, Z 
Liu, Q 
Chen, C 
Zhu, Y 
Zhang, B 
Issue Date: 15-Feb-2023
Source: Journal of power sources, 15 Feb. 2023, v. 557, 232592
Abstract: Whether carbon anodes could sustain the high-rate potassium ion batteries (PIBs) remains controversial, owing partly to the distinct electrode preparation protocols and electrolyte systems in reported works. Herein, we adopt a freestanding carbon nanofiber (CNF) film as a model system to explore the charge transfer kinetics in carbon anodes. Without the interference of binders and additives, we probe the effect of interfacial chemistry and boost the kinetics through a tetrahydrofuran-based electrolyte. The weak solvent-cation interaction promotes the rapid desolvation of potassium ions. More importantly, such an electrolyte also benefits the formation of a thin and uniform solid electrolyte interphase. Consequently, the CNFs anode exhibits fast kinetics evidenced by a capacity of 143 mAh g−1 at a large current density of 1.5 A g−1 (∼5.4C) and 200 mAh g−1 at a low temperature of 0 ○C, significantly outperforming the performance in classical carbonate electrolytes. This work demonstrates the critical roles of electrode/electrolyte interfaces in determining the stability and kinetics of PIBs.
Keywords: Ether-based electrolyte
Kinetics
Potassium-ion batteries
Solid–electrolyte interphase
Weak solvation
Publisher: Elsevier
Journal: Journal of power sources 
ISSN: 0378-7753
EISSN: 1873-2755
DOI: 10.1016/j.jpowsour.2022.232592
Rights: © 2022 Elsevier B.V. All rights reserved.
© 2022. This manuscript version is made available under the CC-BY-NC-ND 4.0 license https://creativecommons.org/licenses/by-nc-nd/4.0/
The following publication Yu, Z., Liu, Q., Chen, C., Zhu, Y., & Zhang, B. (2023). Regulating the interfacial chemistry enables fast-kinetics hard carbon anodes for potassium ion batteries. Journal of Power Sources, 557, 232592 is available at https://doi.org/10.1016/j.jpowsour.2022.232592.
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