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Cited 15 time in webofscience Cited 15 time in scopus
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Gel polymer electrolytes based on nanofibrous polyacrylonitrile-acrylate for lithium batteries

Authors
Kim, Dul-SunWoo, Jang ChangYouk, Ji HoManuel, JamesAhn, Jou-Hyeon
Issue Date
Oct-2014
Publisher
PERGAMON-ELSEVIER SCIENCE LTD
Keywords
Nanostructures; Electron microscopy; Impedance spectroscopy; Electrochemical properties; Ionic conductivity
Citation
MATERIALS RESEARCH BULLETIN, v.58, pp 208 - 212
Pages
5
Indexed
SCI
SCIE
SCOPUS
Journal Title
MATERIALS RESEARCH BULLETIN
Volume
58
Start Page
208
End Page
212
URI
https://scholarworks.gnu.ac.kr/handle/sw.gnu/18759
DOI
10.1016/j.materresbull.2014.01.047
ISSN
0025-5408
1873-4227
Abstract
Nanofibrous membranes for gel polymer electrolytes (GPEs) were prepared by electrospinning a mixture of polyacrylonitrile (PAN) and trimethylolpropane triacrylate (TMPTA) at weight ratios of 1/0.5 and 1/1. TMPTA is used to achieve crosslinking of fibers thereby improving mechanical strength. The average fiber diameters increased with increasing TMPTA concentration and the mechanical strength was also improved due to the enhanced crosslinking of fibers. GPEs based on electrospun membranes were prepared by soaking them in a liquid electrolyte of 1 M LiPF6 in ethylene carbonate (EC)/dimethyl carbonate (DMC) (1:1, v/v). The electrolyte uptake and ionic conductivity of GPEs based on PAN and PAN-acrylate (weight ratio; 1/1 and 1/0.5) were investigated. Ionic conductivity of GPEs based on PAN-acrylate was the highest for PAN/acrylate (1/0.5) due to the proper swelling of fibers and good affinity with liquid electrolyte. Both GPEs based on PAN and PAN-acrylate membranes show good oxidation stability, >5.0 V vs. Li/Li+. Cells with GPEs based on PAN-acrylate (1/0.5) showed remarkable cycle performance with high initial discharge capacity and low capacity fading. (C) 2014 Elsevier Ltd. All rights reserved.
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