引用本文:
Fangling Cui, Zongjie Hu, Jiayu Huang, Xiaoju Li, Ruihu Wang. MXene-based materials for separator modification of lithium-sulfur batteries[J]. Chinese Journal of Structural Chemistry,
2024, 43(7): 100337.
doi:
10.1016/j.cjsc.2024.100337
Citation: Fangling Cui, Zongjie Hu, Jiayu Huang, Xiaoju Li, Ruihu Wang. MXene-based materials for separator modification of lithium-sulfur batteries[J]. Chinese Journal of Structural Chemistry, 2024, 43(7): 100337. doi: 10.1016/j.cjsc.2024.100337
Citation: Fangling Cui, Zongjie Hu, Jiayu Huang, Xiaoju Li, Ruihu Wang. MXene-based materials for separator modification of lithium-sulfur batteries[J]. Chinese Journal of Structural Chemistry, 2024, 43(7): 100337. doi: 10.1016/j.cjsc.2024.100337
MXene-based materials for separator modification of lithium-sulfur batteries
摘要:
Lithium-sulfur (Li-S) batteries are one of promising energy storage systems. However, rapid capacity attenuation caused by shuttle effect of soluble polysulfides is one of major challenges in practical application. The separator modification is one complementary countermeasure besides the construction of sulfur host materials in the cathode. MXene is one type of outstanding candidates for promoting redox kinetics of sulfur species. Herein, recent advances of MXene-based materials as separator modifiers are summarized. The importance of high conductivity and catalytic effects in promoting catalytic conversion of polysulfides and suppressing shuttle effect of polysulfides has been highlighted. The superiority of MXene for improving reversible capacity and cycling stability has been demonstrated. New strategies for the design of MXene-based separator modifiers are proposed to improve energy density and lifetime. The review provides new perspectives for future development of high-performance Li-S batteries.
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关键词:
- MXene
- / Lithium-sulfur batteries
- / Separators
- / Shuttle effects
- / Catalysis
English
MXene-based materials for separator modification of lithium-sulfur batteries
Abstract:
Lithium-sulfur (Li-S) batteries are one of promising energy storage systems. However, rapid capacity attenuation caused by shuttle effect of soluble polysulfides is one of major challenges in practical application. The separator modification is one complementary countermeasure besides the construction of sulfur host materials in the cathode. MXene is one type of outstanding candidates for promoting redox kinetics of sulfur species. Herein, recent advances of MXene-based materials as separator modifiers are summarized. The importance of high conductivity and catalytic effects in promoting catalytic conversion of polysulfides and suppressing shuttle effect of polysulfides has been highlighted. The superiority of MXene for improving reversible capacity and cycling stability has been demonstrated. New strategies for the design of MXene-based separator modifiers are proposed to improve energy density and lifetime. The review provides new perspectives for future development of high-performance Li-S batteries.
-
Key words:
- MXene
- / Lithium-sulfur batteries
- / Separators
- / Shuttle effects
- / Catalysis
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