An ion-selective separator suppresses polysulfides shuttle for advanced lithium–sulfur batteries
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Publisher
Springer Science and Business Media LLC
Link
https://link.springer.com/content/pdf/10.1007/s10800-024-02165-1.pdf
Reference52 articles.
1. Zeng G, Chen D, Zhen C, Feng C, Pang Y, He W (2023) Amorphous Fe-phytate enables fast polysulfide redox for high-loading lithium sulfur batteries. Small 19:2302548
2. Yang Y, Wang W, Meng G, Zhang J (2022) Function-directed design of battery separators based on microporous polyolefin membranes. J Mater Chem A 10:14137
3. Zhang X, Sun Q, Zhen C, Niu Y, Han Y, Zeng G, Chen D, Feng C, Chen N, Lv W, He W (2021) Recent progress in flame-retardant separators for safe lithium-ion batteries. Energy Storage Mater 37:628–647
4. Hou L-P, Zhang X-Q, Li B-Q, Zhang Q (2021) Challenges and promises of lithium metal anode by soluble polysulfides in practical lithium–sulfur batteries. Mater Today 45:62–76
5. Zeng G, Liu Y, Chen D, Zhen C, Han Y, He W (2021) Natural lepidolite enables fast polysulfide redox for high-rate lithium sulfur batterie. Adv Energy Mater 11:2102058
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