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Effect of Different Cations on Ion-Transport Behavior in Polymer Gel Electrolytes Intended for Application in Flexible Electrochemical Devices
被引:0
|作者:
Pinakin J. Bhatt
Nimisha Pathak
Kuldeep Mishra
D. K. Kanchan
Deepak Kumar
机构:
[1] Electronics and Mechanical Engineering School,Department of Applied Mathematics, Faculty of Technology and Engineering
[2] Gujarat Technological University,Department of Physics
[3] M.S. University of Baroda,ITM (SLS)
[4] Jaypee University,undefined
[5] Baroda University,undefined
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关键词:
Polymer gel electrolytes;
ion conduction behavior;
effect of different cations;
electrochemical impedance spectroscopy;
electrolyte materials for flexible electrochemical devices;
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摘要:
This paper reports the effect of different cations (Na, Mg and Li) while keeping perchlorate as the common anion on ion-dynamics behavior within polymer gel electrolytes containing tetraethylene glycol dimethyl ether (TEGDME) solvent and poly(vinylidene fluoride-hexafluoropropylene) (PVdF-HFP) as the polymer host. FTIR investigations demonstrate significant changes in characteristic bands, while XRD observations indicate prominent structural variation in terms of merger/suppression of phases when NaClO4, Mg(ClO4)2 and LiClO4 salts are immobilized in the PVdF-HFP/TEGDME matrix. The highest room temperature ionic conductivity of 1.2 × 10−3 S cm−1 with high dielectric constant value has been obtained for the Li+ conducting electrolyte composition due to its superior electrochemistry and ion-conduction behavior as compared to its Na+ and Mg2+ counterparts. In the low-frequency region, modulus curves reveal polarizing effects with long-range mobility/migration of Na/Mg/Li ions, while in the high-frequency region, a peak onset relating the translational ion dynamics and conductivity relaxation is observed. The reported polymer gel electrolytes may be employed as electronic materials for developing next-generation flexible electrochemical devices.
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页码:1371 / 1384
页数:13
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