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Fabrication of hybrid solid electrolyte by LiPF6 liquid electrolyte infiltration into nano-porous Na2O-SiO2-B 2O3 glass membrane

Authors
Kim, Ji SookLee, Sun HwaShin, Dong Wook
Issue Date
Jun-2007
Publisher
Scitec Publications Ltd.
Keywords
Hybrid solid electrolyte; Lithium batteries; Phase separation; Porous glass; Spinodal decomposition
Citation
Solid State Phenomena, v.124-126, no.PART 2, pp 1027 - 1030
Pages
4
Indexed
SCOPUS
Journal Title
Solid State Phenomena
Volume
124-126
Number
PART 2
Start Page
1027
End Page
1030
URI
https://scholarworks.bwise.kr/hanyang/handle/2021.sw.hanyang/180004
DOI
10.4028/www.scientific.net/SSP.124-126.1027
ISSN
1012-0394
1662-9779
Abstract
To improve ion mobility in solid inorganic electrolyte for lithium ion battery, the hybrid electrolytes were developed in the form of the organic-inorganic meso-scale hybridization by the infiltration of liquid electrolyte into meso-porous inorganic glass membrane. Glass electrolyte membranes with nanopores were prepared by spinodal decomposition and subsequent acid leaching. The most suitable glass electrolyte membranes could be fabricated from the 7.5Na2O-46.25B2O3 46.25SiO 2 (mol%). The effect of leaching temperature, leaching time and leaching acids on the preparation of the membranes were investigated. The microstructure of the cross-section of 7.5Na2O-46.25B 2O3-46.25SiO2 glass electrolytes were examined with a scanning electron microscope. Then, liquid electrolyte was infiltrated by dipping method into etched glasses electrolyte. Full cells were fabricated by LiCoO2 for cathode materials and MCMB for anode materials. Conductivity and charge-discharge test of the porous glass electrolyte membrane was measured.
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