REFERENCES

1. Jiang L, Wang Z, Pan P, et al. Excimer ultraviolet-irradiated graphene separator for suppressing polysulfide shuttling in Li-S batteries. J Alloys Compd 2022;903:163932.

2. Zhang L, Chen Y. Electrolyte solvation structure as a stabilization mechanism for electrodes. Energy Mater 2022;1:100004.

3. Yu Z, Shao Y, Ma L, et al. Revealing the sulfur redox paths in a Li-S battery by an In situ hyphenated technique of electrochemistry and mass spectrometry. Adv Mater 2022;34:e2106618.

4. Huang CJ, Thirumalraj B, Tao HC, et al. Decoupling the origins of irreversible coulombic efficiency in anode-free lithium metal batteries. Nat Commun 2021;12:1452.

5. Zheng S, Zhu X, Ouyang Y, et al. Metal-organic framework decorated polymer nanofiber composite separator for physiochemically shielding polysulfides in stable lithium-sulfur batteries. Energy Fuels 2021;35:19154-63.

6. Chadha U, Bhardwaj P, Padmanaban S, et al. Review - contemporary progresses in carbon-based electrode material in Li-S batteries. J Electrochem Soc 2022;169:020530.

7. Suzanowicz AM, Lee Y, Lin H, Marques OJJ, Segre CU, Mandal BK. A new graphitic nitride and reduced graphene oxide-based sulfur cathode for high-capacity lithium-sulfur cells. Energies 2022;15:702.

8. Zhong X, Wang D, Sheng J, et al. Freestanding and sandwich mxene-based cathode with suppressed lithium polysulfides shuttle for flexible lithium-sulfur batteries. Nano Lett 2022;22:1207-16.

9. Wei Z, Wang R. Chemically etched CeO2-x nanorods with abundant surface defects as effective cathode additive for trapping lithium polysulfides in Li-S batteries. J Colloid Interf Sci 2022;615:527-42.

10. Chen X, Ji H, Chen W, et al. In situ protection of a sulfur cathode and a lithium anode via adopting a fluorinated electrolyte for stable lithium-sulfur batteries. Sci China Mater 2021;64:2127-38.

11. Wang Q, Wang H, Wu J, Zhou M, Liu W, Zhou H. Advanced electrolyte design for stable lithium metal anode: from liquid to solid. Nano Energy 2021;80:105516.

12. Paul PP, Mcshane EJ, Colclasure AM, et al. A review of existing and emerging methods for lithium detection and characterization in Li-ion and Li-metal batteries. Adv Energy Mater 2021;11:2100372.

13. Balaish M, Gonzalez-rosillo JC, Kim KJ, Zhu Y, Hood ZD, Rupp JLM. Processing thin but robust electrolytes for solid-state batteries. Nat Energy 2021;6:227-39.

14. Hu W, Liang X, Yang X, et al. Sulfophenylated poly (ether ether ketone ketone) nanofiber composite separator with excellent electrochemical performance and dimensional thermal stability for lithium-ion battery via electrospinning. Macromol Mater Eng 2021;306:2100118.

15. Aslam MK, Jamil S, Hussain S, Xu M. Effects of catalysis and separator functionalization on high energy lithium sulfur batteries: a complete review. Energy Environ Mater 2022;Online ahead of print.

16. Xiang H, Liu X, Deng N, Cheng B, Kang W. A novel EDOT/F co-doped PMIA nanofiber membrane as separator for high-performance lithium-sulfur battery. Chem Asian J 2022;17:e202200669.

17. Zhou C, He Q, Li Z, et al. A robust electrospun separator modified with in situ grown metal-organic frameworks for lithium-sulfur batteries. Chem Eng J 2020;395:124979.

18. Zhao J, Yan G, Zhang X, et al. In situ interfacial polymerization of lithiophilic COF@PP and POP@PP separators with lower shuttle effect and higher ion transport for high-performance Li-S batteries. Chem Eng J 2022;442:136352.

19. Liang X, Wang L, Wang Y, Liu Y, Sun Y, Xiang H. Constructing multi-functional composite separator of PVDF-HFP/h-BN supported Co-CNF membrane for lithium-sulfur batteries. Sustain Energy Fuels 2022;6:440-8.

20. Zhu L, Jiang H, Ran W, et al. Turning biomass waste to a valuable nitrogen and boron dual-doped carbon aerogel for high performance lithium-sulfur batteries. Appl Surf Sci 2019;489:154-64.

21. Jing W, Zu J, Zou K, et al. Sandwich-like strontium fluoride graphene-modified separator inhibits polysulfide shuttling and lithium dendrite growth in lithium-sulfur batteries. J Mater Chem A 2022;10:4833-44.

22. Han Y, Xu Y, Zhang S, Li T, Ramakrishna S, Liu Y. Progress of improving mechanical strength of electrospun nanofibrous membranes. Macromol Mater Eng 2020;305:2000230.

23. Jiang W, Han Y, Ding Y. Sepiolite and ZIF-67 co-modified PAN/PVdF-HFP nanofiber separators for advanced Li-ion batteries. Nanotechnology 2022;33:425601.

24. Li B, Pan Y, Luo B, et al. MOF-derived NiCo2S4@C as a separator modification material for high-performance lithium-sulfur batteries. Electrochim Acta 2020;344:135811.

25. Huang S, Huixiang E, Yang Y, Zhang Y, Ye M, Li CC. Transition metal phosphides: new generation cathode host/separator modifier for Li-S batteries. J Mater Chem A 2021;9:7458-80.

26. Wang Y, Zhu L, Wang J, Zhang Z, Yu J, Yang Z. Enhanced chemisorption and catalytic conversion of polysulfides via CoFe@NC nanocubes modified separator for superior Li-S batteries. Chem Eng J 2022;433:133792.

27. Wei Z, Ren Y, Sokolowski J, Zhu X, Wu G. Mechanistic understanding of the role separators playing in advanced lithium-sulfur batteries. InfoMat 2020;2:483-508.

28. Li C, Liu R, Xiao Y, Cao F, Zhang H. Recent progress of separators in lithium-sulfur batteries. Energy Stor Mater 2021;40:439-60.

29. Chen M, Chen Z, Fu X, Zhong W. A Janus protein-based nanofabric for trapping polysulfides and stabilizing lithium metal in lithium-sulfur batteries. J Mater Chem A 2020;8:7377-89.

30. Chen M, Fu X, Taylor ND, Chen Z, Zhong W. Rational design of graphite nanoplatelets interlayers via a surfactant-controlled strategy for enhancing lithium-sulfur batteries. ACS Sustain Chem Eng 2019;7:15267-77.

31. Wu J, Wang S, Lei Z, et al. Pomegranate-like C60@cobalt/nitrogen-codoped porous carbon for high-performance oxygen reduction reaction and lithium-sulfur battery. Nano Res 2021;14:2596-605.

32. Zhao W, Feng W, Chen J, Niu Y, Zhang L. Polar Co3Se4 nitrogen-doped porous carbon derived from ZIF-67 for use as a sulfur substrates in high-performance lithium-sulfur batteries. J Alloys Compd 2022;923:166435.

33. Li Y, Zhou P, Li H, et al. A freestanding flexible single-atom cobalt-based multifunctional interlayer toward reversible and durable lithium-sulfur batteries. Small Methods 2020;4:1900701.

34. Xu W, Pang H, Zhou H, et al. Lychee-like TiO2@TiN dual-function composite material for lithium-sulfur batteries. RSC Adv 2020;10:2670-6.

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