Review on gel polymer electrolytes for lithium batteries

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[2]  T. Sakai,et al.  All solid-state lithium-polymer battery using poly(urethane acrylate)/nano-SiO2 composite electrolytes , 2005 .

[3]  M. Anbu Kulandainathan,et al.  Characterization of poly(vinylidene fluoride–hexafluoropropylene) (PVdF–HFP) electrolytes complexed with different lithium salts , 2005 .

[4]  Maria Forsyth,et al.  Ionic conductivity studies of polymeric electrolytes containing lithium salt with plasticizer , 2004 .

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[6]  Karim Zaghib,et al.  LiFePO4/polymer/natural graphite: low cost Li-ion batteries , 2004 .

[7]  Ashok Kumar,et al.  Ionic conduction in P(VDF-HFP)/PVDF–(PC + DEC)–LiClO4 polymer gel electrolytes , 2004 .

[8]  F. Alloin,et al.  Plasticized microporous poly(vinylidene fluoride) separators for lithium‐ion batteries. III. Gel properties and irreversible modifications of poly(vinylidene fluoride) membranes under swelling in liquid electrolytes , 2004 .

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[10]  S. Gopukumar,et al.  Cycling behavior of poly(vinylidene fluoride-hexafluoro propylene) (PVdF-HFP) membranes prepared by phase inversion method , 2004 .

[11]  Dukjoon Kim,et al.  Thermal, mechanical, swelling, and electrochemical properties of poly(vinylidene fluoride)-co-hexafluoropropylene/poly(ethylene glycol) hybrid-type polymer electrolytes , 2003 .

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[13]  Dale Teeters,et al.  Characterization of PVdF-HFP polymer membranes prepared by phase inversion techniques I. Morphology and charge–discharge studies , 2003 .

[14]  Dale Teeters,et al.  Charge–discharge studies on a lithium cell composed of PVdF-HFP polymer membranes prepared by phase inversion technique with a nanocomposite cathode , 2003 .

[15]  Georges Caillon,et al.  Thin and flexible lithium-ion batteries: investigation of polymer electrolytes , 2003 .

[16]  S. Moon,et al.  Preparation of gel polymer electrolytes using PMMA interpenetrating polymeric network and their electrochemical performances , 2003 .

[17]  H. Moon,et al.  Role of functional nano-sized inorganic fillers in poly(ethylene) oxide-based polymer electrolytes , 2003 .

[18]  H. Kataoka,et al.  Ionic conduction mechanisms of lithium gel polymer electrolytes investigated by the conductivity and diffusion coefficient , 2003 .

[19]  Hee‐Tak Kim,et al.  Electrochemical characteristics of phase-separated polymer electrolyte based on poly(vinylidene fluoride–co-hexafluoropropane) and ethylene carbonate , 2003 .

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[23]  A. Stephan,et al.  Ionic conductivity and diffusion coefficient studies of PVdF–HFP polymer electrolytes prepared using phase inversion technique , 2002 .

[24]  Yang‐Kook Sun,et al.  Porous Polyacrylonitrile Membrane for Lithium-Ion Cells , 2002 .

[25]  C. Wan,et al.  Structure and performance of porous polymer electrolytes based on P(VDF-HFP) for lithium ion batteries , 2002 .

[26]  Kyoung-hee Lee,et al.  Studies on a New Series of Cross-Linked Polymer Electrolytes for a Lithium Secondary Battery , 2001 .

[27]  W. Henderson,et al.  PEO-LiN ( SO 2 CF 2 CF 3 ) 2 Polymer Electrolytes: I. XRD, DSC, and Ionic Conductivity Characterization , 2001 .

[28]  H. Kataoka,et al.  Investigation of the Conduction Mechanisms of Lithium Gel Polymer Electrolytes Based on Electrical Conductivity and Diffusion Coefficient Using NMR , 2001 .

[29]  J. Yang,et al.  Cycling performances and interfacial properties of a Li/PEO-Li(CF3SO2)2N-ceramic filler/LiNi0.8Co0.2O2 cell , 2001 .

[30]  T. Sakai,et al.  Liquid-free rechargeable Li polymer battery , 2001 .

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[32]  Z. Wen,et al.  Polymer electrolytes based on hyperbranched polymers , 2001 .

[33]  Y. W. Kim,et al.  Ionic conduction and electrochemical properties of new poly(acrylonitrile-itaconate)-based gel polymer electrolytes , 2001 .

[34]  J. Vondrak Gel polymer electrolytes based on PMMA , 2001 .

[35]  E. Wang,et al.  Impedance study of (PEO)10LiClO4–Al2O3 composite polymer electrolyte with blocking electrodes , 2001 .

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[37]  Jung-Ki Park,et al.  Preparation and electrochemcial characteristics of plasticized polymer electrolytes based upon a P(VdF-co-HFP)/PVAc blend , 2001 .

[38]  E. Quartarone,et al.  Poly(vinylidenefluoride)-based porous polymer electrolytes , 2001 .

[39]  H. Allcock,et al.  A vibrational spectroscopic study of lithium triflate in polyphosphazenes with linear oligoethyleneoxy side-chains of different lengths , 2001 .

[40]  Jung-Ki Park,et al.  New polymer electrolytes based on PVC/PMMA blend for plastic lithium-ion batteries , 2001 .

[41]  R. Frech,et al.  A comparative vibrational spectroscopic study of lithium triflate and sodium triflate in linear poly(ethylenimine) , 2001 .

[42]  Dong‐Won Kim,et al.  Electrochemical characteristics of Li/LiMn2O4 cells using gel polymer electrolytes , 2001 .

[43]  C. Wan,et al.  Conductivity Study of Porous Plasticized Polymer Electrolytes Based on Poly(vinylidene fluoride) A Comparison with Polypropylene Separators , 2000 .

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[48]  A. Stephan Ionic conductivity studies on plasticized PVC/PMMA blend polymer electrolyte containing LiBF4 and LiCF3SO3 , 2000 .

[49]  Dong‐Won Kim Electrochemical characterization of poly(ethylene-co-methyl acrylate)-based gel polymer electrolytes for lithium-ion polymer batteries , 2000 .

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[56]  Y. Ikeda,et al.  Characterization of comb-shaped high molecular weight poly(oxyethylene) with tri(oxyethylene) side chains for a polymer solid electrolyte , 2000 .

[57]  Jung-Ki Park,et al.  Electrochemical characteristics of PAN ionomer based polymer electrolytes , 2000 .

[58]  Bruno Scrosati,et al.  Physical and chemical properties of nanocomposite polymer electrolytes , 1999 .

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[60]  A. Stephan,et al.  A study on polymer blend electrolyte based on PVC/PMMA with lithium salt , 1999 .

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[64]  Young-Min Choi,et al.  Electrochemical performance of lithium-ion polymer cell using gel polymer electrolyte based on acrylonitrile-methyl methacrylate-styrene terpolymer , 1999 .

[65]  Jiří Vondrák,et al.  Polymer gel electrolytes for electrochromic devices , 1999 .

[66]  B. Scrosati,et al.  High-performance gel-type lithium electrolyte membranes , 1999 .

[67]  C. Wan,et al.  Review of gel-type polymer electrolytes for lithium-ion batteries , 1999 .

[68]  L. Matějka,et al.  Formation and structure of the epoxy-silica hybrids , 1999 .

[69]  J. R. Stevens,et al.  Effect of Salt Concentration on the Conductivity of PEO-Based Composite Polymeric Electrolytes , 1998 .

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[72]  Koichi Tanaka,et al.  A novel fire-retardant polyacrylonitrile-based gel electrolyte for lithium batteries , 1998 .

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[74]  Shinzo Kohjiya,et al.  High ionic conductivity of new polymer electrolytes based on high molecular weight polyether comb polymers , 1998 .

[75]  J. Sanchez,et al.  Various aspects of dynamical properties of high and low molecular weight PPO-LITFSI polymer electrolytes obtained by NMR techniques , 1998 .

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[77]  C. Wan,et al.  Preparation and Characterization of Poly(vinyl chloride‐co‐vinyl acetate)‐Based Gel Electrolytes for Li‐Ion Batteries , 1998 .

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[79]  Yang‐Kook Sun,et al.  Synthesis and electrochemical characteristics of spinel phase LiMn2O4-based cathode materials for lithium polymer batteries , 1998 .

[80]  Yufei Chen,et al.  Measurements of the Thermal Conductivity of Poly(ethylene oxide)‐Lithium Salt Electrolytes , 1997 .

[81]  Y. Rosenberg,et al.  Conduction mechanisms in concentrated LiI-polyethylene oxide-Al{sub 2}O{sub 3}-based solid electrolytes , 1997 .

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[84]  J. R. Stevens,et al.  IMPEDANCE SPECTROSCOPY AND PHASE STRUCTURE OF POLYETHER-POLY(METHYL METHACRYLATE)-LICF3SO3 BLEND-BASED ELECTROLYTES , 1997 .

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