REFERENCES

1. Zhao, Y.; Wang, D.; Gao, Y.; Chen, T.; Huang, Q.; Wang, D. Stable Li metal anode by a polyvinyl alcohol protection layer via modifying solid-electrolyte interphase layer. Nano. Energy. 2019, 64, 103893.

2. Li, Z.; Weng, S.; Fu, J.; et al. Nonflammable quasi-solid electrolyte for energy-dense and long-cycling lithium metal batteries with high-voltage Ni-rich layered cathodes. Energy. Storage. Mater. 2022, 47, 542-50.

3. Pan, K.; Zhang, L.; Qian, W.; et al. A flexible ceramic/polymer hybrid solid electrolyte for solid-state lithium metal batteries. Adv. Mater. 2020, 32, 2000399.

4. Yang, J.; Li, M.; Sun, Z.; et al. Prolonging the cycling lifetime of lithium metal batteries with a monolithic and inorganic-rich solid electrolyte interphase. Energy. Environ. Sci. 2023, 16, 3837-46.

5. Jabbari, V.; Yurkiv, V.; Rasul, M. G.; Phakatkar, A. H.; Mashayek, F.; Shahbazian-Yassar, R. In situ formation of stable solid electrolyte interphase with high ionic conductivity for long lifespan all-solid-state lithium metal batteries. Energy. Storage. Mater. 2023, 57, 1-13.

6. Liu, L.; Shi, Y.; Liu, M.; et al. An ultrathin solid electrolyte for high-energy lithium metal batteries. Adv. Funct. Mater. 2024, 34, 2403154.

7. Huang, H.; Liu, C.; Liu, Z.; et al. Functional inorganic additives in composite solid-state electrolytes for flexible lithium metal batteries. Adv. Powder. Mater. 2024, 3, 100141.

8. Liang, W.; Liu, Y.; Dai, L.; et al. Strong dipole moments and increased charge transfer in polymer-based solid electrolyte enable wide-temperature solid-state lithium metal batteries. Angew. Chem. Int. Ed. 2025, 64, e202513604.

9. Chen, Z.; Zhao, W.; Liu, Q.; et al. Janus quasi-solid electrolyte membranes with asymmetric porous structure for high-performance lithium-metal batteries. Nano. Micro. Lett. 2024, 16, 114.

10. Kang, Z.; Zhou, H.; Zheng, S.; et al. Exploring the failure mechanisms of quasi/all solid-state Li-ion batteries with Si-based electrodes. Energy. Mater. 2026, 6, 600024.

11. Wu, H.; Jia, H.; Wang, C.; Zhang, J. G.; Xu, W. Recent progress in understanding solid electrolyte interphase on lithium metal anodes. Adv. Energy. Mater. 2020, 11, 2003092.

12. Su, Y.; Rong, X.; Gao, A.; et al. Rational design of a topological polymeric solid electrolyte for high-performance all-solid-state alkali metal batteries. Nat. Commun. 2022, 13, 4181.

13. Wu, F.; Wen, Z.; Zhao, Z.; et al. Double-network composite solid electrolyte with stable interface for dendrite-free Li metal anode. Energy. Storage. Mater. 2021, 38, 447-53.

14. Ye, G.; Hong, X.; He, M.; et al. All-solid-state lithium metal batteries with microdomain-regulated polycationic solid electrolytes. Adv. Mater. 2025, 37, 2417829.

15. Liu, Y.; Shi, Z.; Yue, X.; et al. A transformative molecular muscle solid electrolyte. J. Am. Chem. Soc. 2025, 148, 1570-80.

16. Zhang, Z.; Han, W. From liquid to solid-state lithium metal batteries: fundamental issues and recent developments. Nano. Micro. Lett. 2023, 16, 24.

17. Guo, C.; Du, K.; Tao, R.; et al. Inorganic filler enhanced formation of stable inorganic-rich solid electrolyte interphase for high performance lithium metal batteries. Adv. Funct. Mater. 2023, 33, 2301111.

18. Jagger, B.; Pasta, M. Solid electrolyte interphases in lithium metal batteries. Joule 2023, 7, 2228-44.

19. Nie, L.; Zhu, J.; Wu, X.; et al. A large-scale fabrication of flexible, ultrathin, and robust solid electrolyte for solid-state lithium-sulfur batteries. Adv. Mater. 2024, 36, 2400115.

20. Sun, Y.; Li, J.; Xu, S.; Zhou, H.; Guo, S. Molecular engineering toward robust solid electrolyte interphase for lithium metal batteries. Adv. Mater. 2023, 36, 2311687.

21. Chen, M.; Ma, C.; Ding, Z.; et al. Upgrading electrode/electrolyte interphases via polyamide-based quasi-solid electrolyte for long-life nickel-rich lithium metal batteries. ACS. Energy. Lett. , 2021, 1280-9.

22. Shan, T.; Ju, Z.; Xiao, D.; et al. Molecularly woven artificial solid electrolyte interphase. Angew. Chem. Int. Ed. 2025, 137, e202505056.

23. Wang, Y.; Chen, S.; Li, Z.; Peng, C.; Li, Y.; Feng, W. In-situ generation of fluorinated polycarbonate copolymer solid electrolytes for high-voltage Li-metal batteries. Energy. Storage. Mater. 2022, 45, 474-83.

24. Liu, S.; Ji, X.; Piao, N.; et al. An inorganic-rich solid electrolyte interphase for advanced lithium-metal batteries in carbonate electrolytes. Angew. Chem. Int. Ed. 2020, 60, 3661-71.

25. Luo, P.; Zhang, Y.; Song, J.; et al. Understanding and mitigating acidic species in all-fluorinated electrolytes for a stable 572 Wh/kg lithium metal battery (LMB). Energy. Storage. Mater. 2025, 78, 104234.

26. Yu, W.; Kang, Z.; Liu, Z.; et al. Physical-chemical dual networks enabled mechanically robust solid electrolytes for stress-strain regulation. Energy. Storage. Mater. 2026, 85, 104882.

27. Yang, N.; Cui, Y.; Su, H.; et al. A chemically bonded ultraconformal layer between the elastic solid electrolyte and lithium anode for high-performance lithium metal batteries. Angew. Chem. Int. Ed. 2023, 62, e202304339.

28. Yang, L.; Chu, Y.; Feng, Y.; et al. Breaking voltage limitations: triethyl phosphate-engineered PVDF-based electrolytes with dual-interphase stabilization for 4.7 V-class quasi-solid-state lithium metal batteries. J. Am. Chem. Soc. 2025, 147, 25940-9.

29. Zhang, S.; Liang, T.; Wang, D.; et al. A stretchable and safe polymer electrolyte with a protecting-layer strategy for solid-state lithium metal batteries. Adv. Sci. 2021, 8, 2003241.

30. Boaretto, N.; Garcia-Calvo, O.; Cobos, M.; et al. Quasi-solid polymer electrolytes with binary and ternary salt mixtures for high-voltage lithium metal batteries. Energy. Mater. 2025, 5, 500040.

31. Xu, D.; Su, J.; Jin, J.; et al. In situ generated fireproof gel polymer electrolyte with Li6.4Ga0.2La3Zr2O12 as initiator and ion-conductive filler. Adv. Energy. Mater. 2019, 9, 1900611.

32. Yang, Y.; Chen, H.; Wan, J.; et al. An interdigitated Li-solid polymer electrolyte framework for interfacial stable all-solid-state batteries. Adv. Energy. Mater. 2022, 12, 2201160.

33. Ni, S.; Zhang, M.; Li, C.; et al. A 3D framework with Li3N-Li2S solid electrolyte interphase and fast ion transfer channels for a stabilized lithium-metal anode. Adv. Mater. 2022, 35, 2209028.

34. Lu, P.; Wu, Y.; Wu, D.; et al. Rate-limiting mechanism of all-solid-state battery unravelled by low-temperature test-analysis flow. Energy. Storage. Mater. 2024, 67, 103316.

35. Shin, S. S.; Kim, J.; Choi, S.; et al. Quantitative determination of lithium depletion during rapid cycling in sulfide-based all-solid-state batteries. Chem. Commun. 2021, 57, 3453-6.

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