REFERENCES

1. Geng, S.; Yuan, B.; Zhao, X.; et al. High-voltage anode-free sodium-sulfur batteries. Nature 2026, 649, 353-9.

2. Zhao, L.; Tao, Y.; Zhang, Y.; et al. A critical review on room-temperature sodium-sulfur batteries: from research advances to practical perspectives. Adv. Mater. 2024, 36, e2402337.

3. Yao, W.; Liao, K.; Lai, T.; Sul, H.; Manthiram, A. Rechargeable metal-sulfur batteries: key materials to mechanisms. Chem. Rev. 2024, 124, 4935-5118.

4. Wu, Q.; Zhang, W.; Qin, M.; et al. Tellurium doped sulfurized polyacrylonitrile nanoflower for high-energy-density, long-lifespan sodium-sulfur batteries. Nano. Energy. 2024, 129, 110049.

5. Vaalma, C.; Buchholz, D.; Weil, M.; Passerini, S. A cost and resource analysis of sodium-ion batteries. Nat. Rev. Mater. 2018, 3, BFnatrevmats201813.

6. Tang, W.; Qi, R.; Wu, J.; et al. Engineering, understanding, and optimizing electrolyte/anode interfaces for all-solid-state sodium batteries. Electrochem. Energy. Rev. 2024, 7, 228.

7. Lu, C.; Jiang, H.; Cheng, X.; et al. High-performance fibre battery with polymer gel electrolyte. Nature 2024, 629, 86-91.