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Fabrication and characterization of electrolyte membranes based on organoclay/tripropyleneglycol diacrylate/poly(vinylidene fluoride) electrospun nanofiber composites

Authors
Jeong, Kwang-UnChae, Hee DongLim, Chun IlLee, Hong KiAhn, Jou-HyeonNah, Changwoon
Issue Date
Feb-2010
Publisher
WILEY
Keywords
microporous polymer electrolyte; PVDF; organoclay; tripropyleneglycol diacrylate; ionic conductivity
Citation
POLYMER INTERNATIONAL, v.59, no.2, pp 249 - 255
Pages
7
Indexed
SCI
SCIE
SCOPUS
Journal Title
POLYMER INTERNATIONAL
Volume
59
Number
2
Start Page
249
End Page
255
URI
https://scholarworks.gnu.ac.kr/handle/sw.gnu/25230
DOI
10.1002/pi.2716
ISSN
0959-8103
1097-0126
Abstract
Utilizing polymer electrospinning technology, novel electrolyte membranes based on poly(vinylidene fluoride) (PVDF)/organomodified clay (OC)/tripropyleneglycol diacrylate (TPGDA) composite nanofibers with a diameter of 100-400 nm were fabricated for application in lithium batteries. Ultraviolet photo-polymerization of electrospun PVDF/OC/TPGDA nanofibers generated chemically crosslinked TPGDA-grafted PVDF/OC nanofibers exhibiting robust mechanical and electrochemical properties. The prepared fibrous PVDF/OC/TPGDA electrolytes were characterized in terms of morphology, crystallinity, electrochemical stability, ionic conductivity and cell cycleability. Based on differential scanning calorimetry analysis, the crystallinity of PVDF decreased by ca 10% on employing the OC and TPGDA. Compared with pure PVDF film-based electrolyte membranes, the TPGDA- and OC-modified PVDF electrolyte membranes exhibited improved mechanical properties and various electrochemical properties. The OC- and TPGDA-modified microporous membranes are promising candidates for overcoming the drawbacks of the lower mechanical stability of fibrous-type electrolytes with further improvement of electrochemical performance. (C) 2009 Society of Chemical Industry
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