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Author Spotlight: Accelerating Discovery in Microporous Material Chemistry
Published on: October 6, 2023
Tailoring a Glass Network Structure through Addition of Transition Metal Oxides to Enhance Ionic Conductivity in
Sanja Renka1, Grégory Tricot2, Tomáš Hostinský3
1Ruđer Bošković Institute, Bijenička cesta 54, 10000 Zagreb, Croatia.
Abstract:
In the development of oxide glass-based electrolytes and electrodes for solid-state batteries, high ionic conductivity represents an ultimate challenge. One way of increasing the ionic conductivity in these materials is to increase the mobility of ions through the addition of transition metal oxides. In this study, we report a significant enhancement of lithium-ion conductivity due to structural changes induced by addition of WO3 and MoO3. Despite the potential of WO3 and MoO3 to induce polaronic (electronic) conductivity, these glasses are purely ionic conductors. The increase in lithium-ion conductivity is approximately 5 and 4 orders of magnitude with addition of up to ≈40 mol % WO3 and MoO3, respectively. A detailed structural analysis shows that the increase in the mobility of Li+ ions is related to a strong facilitating effect of tungstate and molybdate units in the glass network. Moreover, this study also discusses similarities and differences in the dynamics of lithium and sodium ions in phosphate glasses containing WO3 and MoO3, and shows that the addition of WO3 can enhance the cathode performance of these glasses in both lithium-ion and sodium-ion batteries.

