Flexible magnesium-ion conducting polymer electrolyte membranes: mechanical, structural, thermal, and electrochemical impedance spectroscopic properties

This paper reports investigations on flexible magnesium-ion-conducting polymer electrolyte membranes using mechanical, structural, and electrochemical impedance spectroscopic analysis. XRD studies reveal significant changes in structural character on varying the concentration of propylene carbonate-...

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Veröffentlicht in:Journal of materials science. Materials in electronics 2020-09, Vol.31 (18), p.15013-15027
Hauptverfasser: Maheshwaran, C., Kanchan, D. K., Mishra, Kuldeep, Kumar, Deepak, Gohel, Khushbu
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Sprache:eng
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Zusammenfassung:This paper reports investigations on flexible magnesium-ion-conducting polymer electrolyte membranes using mechanical, structural, and electrochemical impedance spectroscopic analysis. XRD studies reveal significant changes in structural character on varying the concentration of propylene carbonate-diethyl carbonate (PC-DEC) organic solvent within the polymer electrolyte matrix. SEM and AFM studies indicate variation in surface morphology and maximum roughness height by introducing PC-DEC in increasing amount. The plasticized polymer electrolyte membrane with optimum concentration of 15 wt% PC-DEC demonstrates magnesium-ion conductivity of 3 × 10 − 5  s cm − 1 at room temperature. This flexible electrolyte has Young’s modulus of 100 N mm − 2 , mechanical strength of 2 Kgf, and ability to withstand stress of 6 N mm − 2 and strain of 7 N mm − 2 at a maximum load of 10 Kgf. The electrolyte membranes do not show any degradation after stretching and rolling it for hundred times. The electrolyte membrane offer electrochemical stability window of ~ 3.5 V and Mg 2+ transport number of 0.32. The reported electrolyte membranes can be employed in fabricating flexible magnesium batteries.
ISSN:0957-4522
1573-482X
DOI:10.1007/s10854-020-04065-4