Ultrahigh Li-ion conductive single-ion polymer electrolyte containing fluorinated polysulfonamide for quasi-solid-state Li-ion batteries
Yunyun Zhong
1, 2, 3, 4, 5, 6
,
Lei Zhong
1
,
Shuanjin Wang
1
,
Jiaxiang Qin
1, 2, 3, 4, 5, 6, 7
,
Dongmei Han
8
,
Shan Ren
1
,
Min Xiao
1
,
Luyi Sun
9, 10, 11, 12, 13, 14
,
Y. L. Meng
1, 2, 3, 4, 5, 6
2
The Key Laboratory of Low-carbon Chemistry & Energy Conservation of Guangdong Province
|
3
State key laboratory of optoelectronic materials and technologies
4
School of Materials science and Engineering
6
Guangzhou 510275
|
7
State Key Laboratory of Environmental Adaptability for Industrial Products, China National Electric Apparatus Research Institute, Guangzhou, P. R. China
|
8
10
Polymer Program
11
Institute of Materials Science
12
Department of Chemical & Biomolecular Engineering
14
Storrs
|
Publication type: Journal Article
Publication date: 2019-10-03
scimago Q1
wos Q1
SJR: 2.462
CiteScore: 16.7
Impact factor: 9.5
ISSN: 20507488, 20507496, 09599428, 13645501
General Chemistry
General Materials Science
Renewable Energy, Sustainability and the Environment
Abstract
With the rapid development of electronic devices and electric vehicles, the requirements for their safety issues and service stabilities have become more and more strict. Single-ion gel polymer electrolytes exhibit outstanding ion conduction, high safety, good flexibility and a lithium transference number close to unity, leading to extensive research. In this work, a flexible fluorinated polysulfonamide based single-ion polymer electrolyte (SIPE) was synthesized using lithium [(4-styrenesulfonyl)(fluorosulfonyl)imide] (LiSFSI), pentaerythritol tetrakis(3-mercaptopropionate) (PETMP) and pentaerythritol tetraacrylate (PET4A) via one-step in situ photoinitiated thiol–ene click reaction in plasticizers, with electrospun poly(vinylidene fluoride) (PVDF) as the standing membrane. The influence of plasticizer content was investigated and the optimized electrolyte exhibits ultra-high ionic conductivity (5.81 × 10−3 S cm−1 at 28 °C) and a high lithium transference number of 0.91, near to unity. This ionic conductivity is among the highest ionic conductivities exhibited by SIPEs reported to date. Its electrochemical stability window is up to 5.2 V. More importantly, Li/LiFePO4 cells using the prepared SIPE as both the electrolyte and separator displayed high reversible capacity at room temperature. It also exhibits excellent long-term stability and reliability as it maintains a capacity of 140 mA h g−1 at 0.2C rate even after 230 cycles without obvious decay at room temperature.
Found
Nothing found, try to update filter.
Found
Nothing found, try to update filter.
Top-30
Journals
|
1
2
3
4
|
|
|
ACS Applied Energy Materials
4 publications, 7.14%
|
|
|
ACS applied materials & interfaces
4 publications, 7.14%
|
|
|
Journal of Materials Chemistry A
4 publications, 7.14%
|
|
|
Energy Storage Materials
3 publications, 5.36%
|
|
|
Advanced Functional Materials
3 publications, 5.36%
|
|
|
eTransportation
2 publications, 3.57%
|
|
|
Small
2 publications, 3.57%
|
|
|
Chemical Reviews
1 publication, 1.79%
|
|
|
Advanced Fiber Materials
1 publication, 1.79%
|
|
|
Journal of Materials Science
1 publication, 1.79%
|
|
|
Journal of Energy Chemistry
1 publication, 1.79%
|
|
|
Chinese Chemical Letters
1 publication, 1.79%
|
|
|
iScience
1 publication, 1.79%
|
|
|
Journal of Power Sources
1 publication, 1.79%
|
|
|
Journal of Membrane Science
1 publication, 1.79%
|
|
|
Carbohydrate Polymer Technologies and Applications
1 publication, 1.79%
|
|
|
Materials Science and Engineering B: Solid-State Materials for Advanced Technology
1 publication, 1.79%
|
|
|
Macromolecular Rapid Communications
1 publication, 1.79%
|
|
|
Carbon Energy
1 publication, 1.79%
|
|
|
Advanced Materials
1 publication, 1.79%
|
|
|
Materials Advances
1 publication, 1.79%
|
|
|
Chemical Science
1 publication, 1.79%
|
|
|
Polymer Reviews
1 publication, 1.79%
|
|
|
Advances in Polymer Technology
1 publication, 1.79%
|
|
|
Nanomaterials
1 publication, 1.79%
|
|
|
ACS Applied Nano Materials
1 publication, 1.79%
|
|
|
ChemSusChem
1 publication, 1.79%
|
|
|
Journal of Industrial and Engineering Chemistry
1 publication, 1.79%
|
|
|
ACS Sustainable Chemistry and Engineering
1 publication, 1.79%
|
|
|
1
2
3
4
|
Publishers
|
2
4
6
8
10
12
14
16
|
|
|
Elsevier
16 publications, 28.57%
|
|
|
American Chemical Society (ACS)
12 publications, 21.43%
|
|
|
Wiley
12 publications, 21.43%
|
|
|
Royal Society of Chemistry (RSC)
8 publications, 14.29%
|
|
|
Springer Nature
3 publications, 5.36%
|
|
|
MDPI
2 publications, 3.57%
|
|
|
Taylor & Francis
1 publication, 1.79%
|
|
|
Korean Society of Industrial Engineering Chemistry
1 publication, 1.79%
|
|
|
Autonomous Non-profit Organization Editorial Board of the journal Uspekhi Khimii
1 publication, 1.79%
|
|
|
2
4
6
8
10
12
14
16
|
- We do not take into account publications without a DOI.
- Statistics recalculated weekly.
Are you a researcher?
Create a profile to get free access to personal recommendations for colleagues and new articles.
Metrics
56
Total citations:
56
Citations from 2024:
16
(28%)
Cite this
GOST |
RIS |
BibTex |
MLA
Cite this
GOST
Copy
Zhong Y. et al. Ultrahigh Li-ion conductive single-ion polymer electrolyte containing fluorinated polysulfonamide for quasi-solid-state Li-ion batteries // Journal of Materials Chemistry A. 2019. Vol. 7. No. 42. pp. 24251-24261.
GOST all authors (up to 50)
Copy
Zhong Y., Zhong L., Wang S., Qin J., Han D., Ren S., Xiao M., Sun L., Meng Y. L. Ultrahigh Li-ion conductive single-ion polymer electrolyte containing fluorinated polysulfonamide for quasi-solid-state Li-ion batteries // Journal of Materials Chemistry A. 2019. Vol. 7. No. 42. pp. 24251-24261.
Cite this
RIS
Copy
TY - JOUR
DO - 10.1039/c9ta08795h
UR - https://xlink.rsc.org/?DOI=C9TA08795H
TI - Ultrahigh Li-ion conductive single-ion polymer electrolyte containing fluorinated polysulfonamide for quasi-solid-state Li-ion batteries
T2 - Journal of Materials Chemistry A
AU - Zhong, Yunyun
AU - Zhong, Lei
AU - Wang, Shuanjin
AU - Qin, Jiaxiang
AU - Han, Dongmei
AU - Ren, Shan
AU - Xiao, Min
AU - Sun, Luyi
AU - Meng, Y. L.
PY - 2019
DA - 2019/10/03
PB - Royal Society of Chemistry (RSC)
SP - 24251-24261
IS - 42
VL - 7
SN - 2050-7488
SN - 2050-7496
SN - 0959-9428
SN - 1364-5501
ER -
Cite this
BibTex (up to 50 authors)
Copy
@article{2019_Zhong,
author = {Yunyun Zhong and Lei Zhong and Shuanjin Wang and Jiaxiang Qin and Dongmei Han and Shan Ren and Min Xiao and Luyi Sun and Y. L. Meng},
title = {Ultrahigh Li-ion conductive single-ion polymer electrolyte containing fluorinated polysulfonamide for quasi-solid-state Li-ion batteries},
journal = {Journal of Materials Chemistry A},
year = {2019},
volume = {7},
publisher = {Royal Society of Chemistry (RSC)},
month = {oct},
url = {https://xlink.rsc.org/?DOI=C9TA08795H},
number = {42},
pages = {24251--24261},
doi = {10.1039/c9ta08795h}
}
Cite this
MLA
Copy
Zhong, Yunyun, et al. “Ultrahigh Li-ion conductive single-ion polymer electrolyte containing fluorinated polysulfonamide for quasi-solid-state Li-ion batteries.” Journal of Materials Chemistry A, vol. 7, no. 42, Oct. 2019, pp. 24251-24261. https://xlink.rsc.org/?DOI=C9TA08795H.
Profiles