Loading…

Fluoridation routes, function mechanism and application of fluorinated/fluorine-doped nanocarbon-based materials for various batteries: A review

The synthetic route of fluorinated carbon and its schematic mechanism of function in various batteries and the outlook for fluorinated/fluorine-doped nanocarbon-based materials are summarised in the graphic abstract. [Display omitted] With the popularity and widespread applications of electronics, h...

Full description

Saved in:
Bibliographic Details
Published in:Journal of energy chemistry 2023-10, Vol.85, p.363-393
Main Authors: Liu, Weicui, Deng, Nanping, Wang, Gang, Yu, Ruru, Wang, Xiaoxiao, Cheng, Bowen, Ju, Jingge, Kang, Weimin
Format: Article
Language:English
Subjects:
Citations: Items that this one cites
Items that cite this one
Online Access:Get full text
Tags: Add Tag
No Tags, Be the first to tag this record!
Description
Summary:The synthetic route of fluorinated carbon and its schematic mechanism of function in various batteries and the outlook for fluorinated/fluorine-doped nanocarbon-based materials are summarised in the graphic abstract. [Display omitted] With the popularity and widespread applications of electronics, higher demands are being placed on the performance of battery materials. Due to the large difference in electronegativity between fluorine and carbon atoms, doping fluorine atoms in nanocarbon-based materials is considered an effective way to improve the performance of used battery. However, there is still a blank in the systematic review of the mechanism and research progress of fluorine-doped nanostructured carbon materials in various batteries. In this review, the synthetic routes of fluorinated/fluorine-doped nanocarbon-based (CFx) materials under different fluorine sources and the function mechanism of CFx in various batteries are reviewed in detail. Subsequently, judging from the dependence between the structure and electrochemical performance of nanocarbon sources, the progress of CFx based on different dimensions (0D–3D) for primary battery applications is reviewed and the balance between energy density and power density is critically discussed. In addition, the roles of CFx materials in secondary batteries and their current applications in recent years are summarized in detail to illustrate the effect of introducing F atoms. Finally, we envisage the prospect of CFx materials and offer some insights and recommendations to facilitate the further exploration of CFx materials for various high-performance battery applications.
ISSN:2095-4956
DOI:10.1016/j.jechem.2023.06.020