REFERENCES

1. Zhu, X.; Wu, J.; Liu, J. Insight into inorganic solid-state electrolytes: ionic transport and failure mechanisms. Adv. Funct. Mater. 2024, 34, 2409547.

2. Sotoudeh, M.; Baumgart, S.; Dillenz, M.; et al. Ion mobility in crystalline battery materials. Adv. Energy. Mater. 2024, 14, 2302550.

3. Li, H.; Li, M.; Weng, S.; et al. Autonomous ion-highways quasi-solid electrolytes toward high-voltage lithium metal batteries. Natl. Sci. Rev. 2025, 12, nwaf363.

4. Barclay, J.; Williamson, J. M.; Litt, H.; et al. State-independent ionic conductivity. Science 2025, 390, 1254-8.

5. He, X.; Zhu, Y.; Mo, Y. Origin of fast ion diffusion in super-ionic conductors. Nat. Commun. 2017, 8, 15893.

6. Wang, H.; Yan, W.; Zhu, M. Revolutionizing fiber batteries with polymer gel electrolyte: a groundbreaking innovation in wearable energy. Chem. Synth. 2024, 4, 57.

7. Ruan, Q.; Yao, M.; Yuan, D.; et al. Ionic liquid crystal electrolytes: fundamental, applications and prospects. Nano. Energy. 2023, 106, 108087.

8. Chen, Y.; Han, X.; Liu, Z.; et al. Thermal decomposition and volatility of ionic liquids: factors, evaluation and strategies. J. Mol. Liq. 2022, 366, 120336.

Chemical Synthesis
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