This work shows, for the first time, the critical influence of pressure during the hot sintering stage on the ionic conductivity of the lithium super ionic conductor LiAlGe(PO). A hot press method is developed to obtain high ionic conductivities at the significantly decreased densification temperature of only 650 °C by applying pressure (56 MPa). Considering the possible initiation of undesirable decomposition reactions when cathode materials are annealed at high temperature (typically >=700 °C), the use of high pressure at 650 °C can significantly limit the formation of degradation by-products. This study determines the criteria required to optimize the pressure and temperature parameters for enhancing the total ionic conductivity. Finally, this study reports an all solid-state battery based on a LiFePO olivine cathode prepared at 650 °C showing very good Li-intercalation/deintercalation performance. Good ionic interfacial contact is achieved without using polymer and liquid electrolyte.

Toward an All-Ceramic Cathode-Electrolyte Interface with Low-Temperature Pressed NASICON Li1.5Al0.5Ge1.5(PO4)3 Electrolyte

Bertoni G;
2020

Abstract

This work shows, for the first time, the critical influence of pressure during the hot sintering stage on the ionic conductivity of the lithium super ionic conductor LiAlGe(PO). A hot press method is developed to obtain high ionic conductivities at the significantly decreased densification temperature of only 650 °C by applying pressure (56 MPa). Considering the possible initiation of undesirable decomposition reactions when cathode materials are annealed at high temperature (typically >=700 °C), the use of high pressure at 650 °C can significantly limit the formation of degradation by-products. This study determines the criteria required to optimize the pressure and temperature parameters for enhancing the total ionic conductivity. Finally, this study reports an all solid-state battery based on a LiFePO olivine cathode prepared at 650 °C showing very good Li-intercalation/deintercalation performance. Good ionic interfacial contact is achieved without using polymer and liquid electrolyte.
2020
Istituto dei Materiali per l'Elettronica ed il Magnetismo - IMEM
Istituto Nanoscienze - NANO
Istituto Nanoscienze - NANO - Sede Secondaria Modena
ceramics
hot-pressing
interfaces
lithium
solid-batteries
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/410247
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