Polyethylene oxide (PEO), dimethyl sulphoxide (DMSO) and lithium trifluoromethanesulfonate (LiCF3SO3) salts are combined into a composite polymer electrolyte studied for application in lithium metal battery. FTIR measurements and AFM images are used to reveal the structure and morphology of the polymer electrolyte, while electrochemical impedance spectroscopy (EIS), chronoamperometry and voltammetry are employed for determining the electrolyte conductivity, lithium transference number, chemical and electrochemical stability, respectively. The data reveal a suitable conductivity and lithium transport, i.e., δ above 10−4S cm−1and tLi+about 0.5, at moderate temperature, which allow the use of the membrane and a LiFePO4olivine cathode in an efficient lithium metal cell delivering a capacity of 130 mAh g−1at about 3.4 V, and operating at 50 °C. This relatively low operating temperature, the good electrochemical properties, and the polymer configuration of the PEO-DMSO-LiCF3SO3membrane suggest it as a viable solution for application in high energy lithium metal battery.

A novel polymer electrolyte membrane for application in solid state lithium metal battery

Hassoun, Jusef
Ultimo
2018

Abstract

Polyethylene oxide (PEO), dimethyl sulphoxide (DMSO) and lithium trifluoromethanesulfonate (LiCF3SO3) salts are combined into a composite polymer electrolyte studied for application in lithium metal battery. FTIR measurements and AFM images are used to reveal the structure and morphology of the polymer electrolyte, while electrochemical impedance spectroscopy (EIS), chronoamperometry and voltammetry are employed for determining the electrolyte conductivity, lithium transference number, chemical and electrochemical stability, respectively. The data reveal a suitable conductivity and lithium transport, i.e., δ above 10−4S cm−1and tLi+about 0.5, at moderate temperature, which allow the use of the membrane and a LiFePO4olivine cathode in an efficient lithium metal cell delivering a capacity of 130 mAh g−1at about 3.4 V, and operating at 50 °C. This relatively low operating temperature, the good electrochemical properties, and the polymer configuration of the PEO-DMSO-LiCF3SO3membrane suggest it as a viable solution for application in high energy lithium metal battery.
2018
Zewde, Berhanu W.; Carbone, Lorenzo; Greenbaum, Steve; Hassoun, Jusef
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11392/2390926
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