LAPSE:2023.1521
Published Article

LAPSE:2023.1521
Li/Na Ion Storage Performance of a FeOF Nano Rod with Controllable Morphology
February 21, 2023
Abstract
Although the conversion material iron oxyfluoride (FeOF) possesses a high theoretical specific capacity as a cathode material for Li/Na ion batteries, its poor rate and cycling performances, caused mainly by sluggish (Li+/Na+) reaction kinetics, restrict its practical application. Herein, FeOF with high purity, a fusiform nanorod shape and high crystallinity is prepared through a facile chemical solution reaction. The electrochemical measurements show that the present FeOF exhibits high capacity and good cycling stability as a cathode material for Li-ion batteries. Capacities of 301, 274, 249, 222, and 194 mAh/g at stepwise current densities of 20, 50, 100, 200, and 400 mA/g are achieved, respectively. Additionally, the capacity at 100 mA/g retains 123 mAh/g after 140 cycles. Meanwhile, as a cathode material for Na ion battery, it delivers discharge capacities of 185, 167, 151, 134 and 115 mAh/g at stepwise current densities of 20, 50, 100, 200, and 400 mA/g, respectively. A discharge capacity of 83 mAh/g at 100 mA/g is achieved after 140 cycles. The excellent lithium/sodium-storage performance of the present FeOF material is ascribed to its unique nanostructure.
Although the conversion material iron oxyfluoride (FeOF) possesses a high theoretical specific capacity as a cathode material for Li/Na ion batteries, its poor rate and cycling performances, caused mainly by sluggish (Li+/Na+) reaction kinetics, restrict its practical application. Herein, FeOF with high purity, a fusiform nanorod shape and high crystallinity is prepared through a facile chemical solution reaction. The electrochemical measurements show that the present FeOF exhibits high capacity and good cycling stability as a cathode material for Li-ion batteries. Capacities of 301, 274, 249, 222, and 194 mAh/g at stepwise current densities of 20, 50, 100, 200, and 400 mA/g are achieved, respectively. Additionally, the capacity at 100 mA/g retains 123 mAh/g after 140 cycles. Meanwhile, as a cathode material for Na ion battery, it delivers discharge capacities of 185, 167, 151, 134 and 115 mAh/g at stepwise current densities of 20, 50, 100, 200, and 400 mA/g, respectively. A discharge capacity of 83 mAh/g at 100 mA/g is achieved after 140 cycles. The excellent lithium/sodium-storage performance of the present FeOF material is ascribed to its unique nanostructure.
Record ID
Keywords
electrochemical performance, iron oxyfluoride (FeOF), li-ion batteries, sodium ion batteries
Subject
Suggested Citation
Li L, Xiang L, Lin Y, Chen L, Guo R, Cao Y, Huang X, Wu J. Li/Na Ion Storage Performance of a FeOF Nano Rod with Controllable Morphology. (2023). LAPSE:2023.1521
Author Affiliations
Li L: Zhejiang Provincial Key Laboratory for Cutting Tools, Taizhou University, Taizhou 318000, China
Xiang L: Zhejiang Nandu Power Supply Co., Ltd., Hangzhou 310012, China
Lin Y: Zhejiang Provincial Key Laboratory for Cutting Tools, Taizhou University, Taizhou 318000, China
Chen L: Zhejiang Provincial Key Laboratory for Cutting Tools, Taizhou University, Taizhou 318000, China
Guo R: Zhejiang Provincial Key Laboratory for Cutting Tools, Taizhou University, Taizhou 318000, China
Cao Y: Zhejiang Provincial Key Laboratory for Cutting Tools, Taizhou University, Taizhou 318000, China
Huang X: Zhejiang Provincial Key Laboratory for Cutting Tools, Taizhou University, Taizhou 318000, China [ORCID]
Wu J: Zhejiang Provincial Key Laboratory for Cutting Tools, Taizhou University, Taizhou 318000, China
Xiang L: Zhejiang Nandu Power Supply Co., Ltd., Hangzhou 310012, China
Lin Y: Zhejiang Provincial Key Laboratory for Cutting Tools, Taizhou University, Taizhou 318000, China
Chen L: Zhejiang Provincial Key Laboratory for Cutting Tools, Taizhou University, Taizhou 318000, China
Guo R: Zhejiang Provincial Key Laboratory for Cutting Tools, Taizhou University, Taizhou 318000, China
Cao Y: Zhejiang Provincial Key Laboratory for Cutting Tools, Taizhou University, Taizhou 318000, China
Huang X: Zhejiang Provincial Key Laboratory for Cutting Tools, Taizhou University, Taizhou 318000, China [ORCID]
Wu J: Zhejiang Provincial Key Laboratory for Cutting Tools, Taizhou University, Taizhou 318000, China
Journal Name
Processes
Volume
10
Issue
8
First Page
1491
Year
2022
Publication Date
2022-07-28
ISSN
2227-9717
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Original Submission
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PII: pr10081491, Publication Type: Journal Article
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LAPSE:2023.1521
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https://doi.org/10.3390/pr10081491
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Feb 21, 2023
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