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Designing Spinel Li4Ti5O12 Electrode as Anode Material for Poly(ethylene)oxide-Based Solid-State Batteries
Ander Orue Mendizabal1, Nuria Gomez1, Frédéric Aguesse1
1Center for Cooperative Research on Alternative Energies (CIC energiGUNE), Basque Research and Technology Alliance (BRTA), Parque Tecnológico de Álava, Albert Einstein 48, 01510 Vitoria-Gasteiz, Spain.
Materials (Basel, Switzerland)
|April 3, 2021
Summary
Replacing lithium metal anodes with lithium titanate (LTO) in solid-state batteries (SSBs) prevents dendrite growth and improves safety. LTO-based solid-state batteries demonstrate excellent cycling performance and stability, paving the way for high-performance energy storage.
Area of Science:
- Materials Science
- Electrochemistry
- Energy Storage
Background:
- Lithium metal solid-state batteries (SSBs) face challenges with lithium metal anode instability, leading to dendrite growth and cell failure.
- Spinel lithium titanate (LTO) offers a safer alternative to lithium metal anodes, providing long cycle life and fabrication ease.
Purpose of the Study:
- To evaluate the electrochemical properties of poly(ethylene)oxide (PEO)-based solid-state batteries utilizing LTO as the active anode material.
- To optimize electrode formulations with conductive additives for enhanced performance.
Main Methods:
- Development and optimization of electrode laminates using carbon black and multiwalled carbon nanotubes as conductive additives.
- Electrochemical performance assessment of LTO electrodes in half-cells with a PEO-based solid electrolyte and lithium metal anode.
- Postmortem characterization to analyze component integrity after cycling.
Main Results:
- Optimized LTO electrodes achieved a rate capability of 150 mAh g⁻¹ at C/2.
- Stable cycling over 140 cycles at C/20 with 83% capacity retention was observed.
- Postmortem analysis confirmed no morphological degradation, indicating long-cycling stability.
Conclusions:
- Lithium titanate (LTO) is a viable and high-performance anode material for solid-state batteries.
- The use of LTO in PEO-based solid-state batteries overcomes the limitations of lithium metal anodes.
- This research highlights the potential for developing safer and more durable solid-state batteries.

