Electrical and dielectric behavior of nano-bio ceramic filler incorporated polymer electrolytes for rechargeable lithium batteries

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[1] Karuppasamy, K.
[2] Linda, T.
[3] Thanikaikarasan, S.
[4] Balakumar, S.
[5] Mahalingam, T.
[6] Sebastian, P.J.
[7] Shajan, X. Sahaya
来源
Shajan, X.S. (shajan89@gmail.com) | 1600年 / Ecole Polytechnique de Montreal卷 / 16期
关键词
Apatite - Ionic conduction in solids - Fillers - Lithium batteries - Nanocomposites - Stiffness matrix - Polyelectrolytes - Semiconductor doping - Ionic strength - Nanocomposite films - Filled polymers - Ceramic materials - Hydroxyapatite - Polymer matrix composites - Film preparation - Lithium compounds - Solid electrolytes;
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摘要
A series of nanocomposite solid polymer electrolytes (NCSPE) consisting of PMMA as host polymer, lithium bisoxalatoborate (LiBOB) as doping salt and nano-hydroxy apatite as filler have prepared by membrane hot-press method. To enhance the electrochemical properties and stiffness of polymer electrolyte film, a bioactive ceramic filler nano-hydroxy apatite is incorporated in the polymer matrix. The prepared different weight contents of NCSPE films are subjected to various electrochemical characterizations such as ionic conductivity, electric modulus and dielectric spectroscopy studies. The complexation behavior and structural reorganization in polymer electrolytes are confirmed by means of FT-IR (Fourier-Transform Infra Red Spectroscopy) analysis. The electrical response and relaxation of dipole in polymer electrolytes are investigated by means of electric modulus and dielectric studies. The addition of nano-hydroxy apatite significantly enhances the ionic conductivity and blocking the reorganizing tendency of polymer matrix. The maximum ionic conductivity is found to be in the range of 10-4.8 S/cm for sample containing 10 wt. % nanoceramic filler. © J. New Mat. Electrochem. Systems.
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