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Constructing ultrastable electrode/electrolyte interface for rapid potassium ion storage capability via salt chemistry and interfacial engineering
by
Guo, Zaiping
, Zhang, Wenchao
, Wen, Sheng
, Li, Liangjun
, Gu, Xin
, Liu, Dandan
, Zhang, Li
, Ding, Xiangwei
, Zhao, Xuebo
, Dai, Pengcheng
in
Anodes
/ Atomic/Molecular Structure and Spectra
/ Biomedicine
/ Biotechnology
/ Charge transfer
/ Chemistry and Materials Science
/ Condensed Matter Physics
/ Diffusion coating
/ Diffusion layers
/ Electrochemical analysis
/ Electrochemistry
/ Electrode materials
/ Electrodes
/ Electrolytes
/ Graphene
/ Interfaces
/ Ion diffusion
/ Ion storage
/ Materials Science
/ Nanotechnology
/ Potassium
/ Research Article
/ Side reactions
/ Titanium dioxide
2022
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Constructing ultrastable electrode/electrolyte interface for rapid potassium ion storage capability via salt chemistry and interfacial engineering
by
Guo, Zaiping
, Zhang, Wenchao
, Wen, Sheng
, Li, Liangjun
, Gu, Xin
, Liu, Dandan
, Zhang, Li
, Ding, Xiangwei
, Zhao, Xuebo
, Dai, Pengcheng
in
Anodes
/ Atomic/Molecular Structure and Spectra
/ Biomedicine
/ Biotechnology
/ Charge transfer
/ Chemistry and Materials Science
/ Condensed Matter Physics
/ Diffusion coating
/ Diffusion layers
/ Electrochemical analysis
/ Electrochemistry
/ Electrode materials
/ Electrodes
/ Electrolytes
/ Graphene
/ Interfaces
/ Ion diffusion
/ Ion storage
/ Materials Science
/ Nanotechnology
/ Potassium
/ Research Article
/ Side reactions
/ Titanium dioxide
2022
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Constructing ultrastable electrode/electrolyte interface for rapid potassium ion storage capability via salt chemistry and interfacial engineering
by
Guo, Zaiping
, Zhang, Wenchao
, Wen, Sheng
, Li, Liangjun
, Gu, Xin
, Liu, Dandan
, Zhang, Li
, Ding, Xiangwei
, Zhao, Xuebo
, Dai, Pengcheng
in
Anodes
/ Atomic/Molecular Structure and Spectra
/ Biomedicine
/ Biotechnology
/ Charge transfer
/ Chemistry and Materials Science
/ Condensed Matter Physics
/ Diffusion coating
/ Diffusion layers
/ Electrochemical analysis
/ Electrochemistry
/ Electrode materials
/ Electrodes
/ Electrolytes
/ Graphene
/ Interfaces
/ Ion diffusion
/ Ion storage
/ Materials Science
/ Nanotechnology
/ Potassium
/ Research Article
/ Side reactions
/ Titanium dioxide
2022
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Constructing ultrastable electrode/electrolyte interface for rapid potassium ion storage capability via salt chemistry and interfacial engineering
Journal Article
Constructing ultrastable electrode/electrolyte interface for rapid potassium ion storage capability via salt chemistry and interfacial engineering
2022
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Overview
Conversion/alloying anode materials exhibiting high K storage capacities suffer from large volume variations and unstable electrode/electrolyte interfaces upon cycling. Herein, taking SnS/reduced graphene oxide (SnS/rGO) anodes as an example, the electrochemical performance of SnS/rGO could significantly be improved via employing potassium bis(fluorosulfonyl)imide (KFSI) salt in electrolytes and ultrathin TiO
2
coating. KF-rich inorganic layer was demonstrated to help form robust SEI layer, which could suppress the side reactions to increase the Coulombic efficiency. The formed potassiated K
x
TiO
2
coating layer was constructed to boost charge transfer capability and K-ion diffusion kinetics. The as-prepared SnS/rGO@TiO
2
-20 electrode in KFSI electrolyte delivers the high CE of 99.1% and 424 mAh·g
−1
after 200 cycles with an ultrahigh capacity retention of 98.5%.
Publisher
Tsinghua University Press
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