中文版 | English
Title

Simultaneously tailoring material structure and surface for robust sodium storage: A case study of TiO2

Author
Corresponding AuthorNi,Jiangfeng; Li,Liang
Joint first authorWang,Zhenzhu; Yang,Feng
Publication Years
2023-02-10
DOI
Source Title
ISSN
1005-0302
EISSN
1941-1162
Volume136Pages:91-96
Abstract

Modulating the atomic structure and surface property represents a pivotal and intriguing approach to tailoring the energy storage performance of battery materials, but their simultaneous modulation via simple processes remains a grand challenge. Taking TiO as an example, here we report the structure and surface modulation through a simple two-step operation, hydrogenation and fluorination, which impart high electrical conductivity and robust surface activity to the material. Hydrogenation introduces Ti species in the TiO bulk to accelerate electron transport, while surface fluorination speeds up sodium-ion reaction dynamics. This modulated TiO exhibits robust Na storage, affording 181 mAh g over 2500 cycles at a high rate of 20 C. In addition, when paring with a commercial NaV(PO)OF cathode, the designated TiO allows the full cell to deliver a remarkable power of 3700 W kg, outperforming most sodium-ion batteries. The correlation between the robust performance and the material property is understood through energy band analysis and density functional theory calculations.

Keywords
Subject Area
无机化学
URL[Source Record]
Indexed By
SCI ; EI
Language
English
SUSTech Authorship
共同第一 ; Others
Funding Project
Natural Science Research of Jiangsu Higher Education Institutions of China[19KJA170001] ; National Natural Science Foundation of China[51772197] ; National Natural Science Foundation of China[51872192] ; National Natural Science Foundation of China[52025028] ; National Natural Science Foundation of China[52172219] ; Natural Science Foundation of Jiangsu Province[BK20180002]
WOS Research Area
Materials Science ; Metallurgy & Metallurgical Engineering
WOS Subject
Materials Science, Multidisciplinary ; Metallurgy & Metallurgical Engineering
WOS Accession No
WOS:000859469400009
Publisher
EI Accession Number
20223512645850
EI Keywords
Density functional theory ; Electron transport properties ; Fluorination ; Halogenation ; Hydrogenation ; Metal ions ; Modulation ; Sodium compounds ; Sodium-ion batteries ; Storage (materials)
ESI Classification Code
Metallurgy:531.1 ; Storage:694.4 ; Secondary Batteries:702.1.2 ; Chemical Reactions:802.2 ; Inorganic Compounds:804.2 ; Probability Theory:922.1 ; Atomic and Molecular Physics:931.3 ; Quantum Theory; Quantum Mechanics:931.4
ESI Research Field
MATERIALS SCIENCE
Scopus EID
2-s2.0-85136539297
Data Source
Scopus
Publication Status
正式出版
Citation statistics
Cited Times [WOS]:0
Document TypeJournal Article
Identifierhttp://kc.sustech.edu.cn/handle/2SGJ60CL/394944
DepartmentDepartment of Chemistry
Affiliation
1.School of Physical Science and Technology,Center for Energy Conversion Materials & Physics (CECMP),Jiangsu Key Laboratory of Thin Films,Soochow University,Suzhou,215006,China
2.Department of Chemistry,Guangdong Provincial Key Laboratory of Catalysis,Southern University of Science and Technology,Shenzhen,518055,China
Recommended Citation
GB/T 7714
Wang,Zhenzhu,Yang,Feng,Ni,Jiangfeng,et al. Simultaneously tailoring material structure and surface for robust sodium storage: A case study of TiO2[J]. JOURNAL OF MATERIALS SCIENCE & TECHNOLOGY,2023,136:91-96.
APA
Wang,Zhenzhu,Yang,Feng,Ni,Jiangfeng,&Li,Liang.(2023).Simultaneously tailoring material structure and surface for robust sodium storage: A case study of TiO2.JOURNAL OF MATERIALS SCIENCE & TECHNOLOGY,136,91-96.
MLA
Wang,Zhenzhu,et al."Simultaneously tailoring material structure and surface for robust sodium storage: A case study of TiO2".JOURNAL OF MATERIALS SCIENCE & TECHNOLOGY 136(2023):91-96.
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