2014
DOI: 10.1016/j.jpowsour.2014.07.058
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A composite membrane based on a biocompatible cellulose as a host of gel polymer electrolyte for lithium ion batteries

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Cited by 107 publications
(50 citation statements)
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“…Previous papers reported the characterization of PVdFbased polymer electrolytes with electrochemical properties comparable to those shown by our membrane, both in terms of conductivity and electrochemical performances [19e23]. Indeed, PVdF-based polymer electrolytes have been prepared by electrospinning [19,20], in-situ within the cell [21] and by following a typical gel-casting procedure in argon filled glove box [22]. Furthermore, the complexation of poly(vinylidene-fluoride) and LiPF 6 salt in a solid polymer electrolyte matrix has also been proposed [23].…”
Section: Discussionsupporting
confidence: 56%
“…Previous papers reported the characterization of PVdFbased polymer electrolytes with electrochemical properties comparable to those shown by our membrane, both in terms of conductivity and electrochemical performances [19e23]. Indeed, PVdF-based polymer electrolytes have been prepared by electrospinning [19,20], in-situ within the cell [21] and by following a typical gel-casting procedure in argon filled glove box [22]. Furthermore, the complexation of poly(vinylidene-fluoride) and LiPF 6 salt in a solid polymer electrolyte matrix has also been proposed [23].…”
Section: Discussionsupporting
confidence: 56%
“…From the viewpoint of cellulose for electronic, it was remarkable to note that cellulose has been chemically and physically modified for flexible substrate or smart paper for electronic device. To integrate with lithium base materials can be effectively performed for being developed lithium based battery on cellulose [37,38]. Many forms of lithium such as lithium-ion, lithium based oxide and lithium based conductive polymer composite has been extensively investigated for flexible feature of battery [39][40][41].…”
Section: Introductionmentioning
confidence: 99%
“…Ndruru); Telp. : +62-81-22381355 Liquid electrolytes are corrosive and volatile cause leakage and explosion at high temperatures [6]. A thermally unstable separator material else tends to shrinkage at high temperatures causes memory effect.…”
Section: Introductionmentioning
confidence: 99%
“…Cellulose is the most abundant biopolymer in nature and is widely used in many industrial uses, such as: paper making, food packaging, pharmaceutical applications and innovative eco-friendly application. Cellulose derivatives have been successfully applied as polymer electrolytes for LIBs separator application, they are, methyl cellulose [6,13], ethyl cellulose [14], hydroxyethyl cellulose [2], carboxymethyl cellulose [15][16].…”
Section: Introductionmentioning
confidence: 99%