Cellulose-Based Materials and Their Application in Lithium-Sulfur Batteries

被引:1
|
作者
Zampieri, Muriel [1 ,2 ]
Tommasone, Guillermina [3 ,4 ]
Morel, Luciana [3 ,4 ]
Luque, Guillermina Leticia [3 ,4 ]
机构
[1] Univ Nacl Cordoba UNC, Fac Matemat Astron Fis & Comp, RA-5000 Cordoba, Argentina
[2] Consejo Nacl Invest Cient & Tecn, Inst Fis Enrique Gaviola IFEG, RA-5000 Cordoba, Argentina
[3] Consejo Nacl Invest Cient & Tecn, Inst Invest Fis Quim Cordoba INFIQC, RA-5000 Cordoba, Argentina
[4] Univ Nacl Cordoba UNC, Fac Ciencias Quim, Dept Quim Teor & Computac, RA-5000 Cordoba, Argentina
关键词
cellulose-based materials; lithium-sulfur batteries; lithium metal anode; separator; cathode; SOLID POLYMER ELECTROLYTES; LI DENDRITE FORMATION; BACTERIAL CELLULOSE; IONIC-CONDUCTIVITY; REGENERATED CELLULOSE; METAL ANODES; SEPARATORS; NANOCRYSTALS; INTERLAYERS; AEROGEL;
D O I
10.3390/polym17020164
中图分类号
O63 [高分子化学(高聚物)];
学科分类号
070305 ; 080501 ; 081704 ;
摘要
Lithium-sulfur (Li-S) batteries are promising candidates for next-generation energy storage due to their high energy density, cost-effectiveness, and environmental friendliness. However, their commercialization is hindered by challenges, such as the polysulfide shuttle effect, lithium dendrite growth, and low electrical conductivity of sulfur cathodes. Cellulose, a natural, renewable, and versatile biopolymer, has emerged as a multifunctional material to address these issues. In anode protection, cellulose-based composites and coatings mitigate dendrite formation and improve lithium-ion diffusion, extending cycle life and enhancing safety. As separators, cellulose materials exhibit high ionic conductivity, thermal stability, and excellent wettability, effectively suppressing the polysulfide shuttle effect and maintaining electrolyte stability. For the cathode, cellulose-derived carbon frameworks and binders improve sulfur loading, conductivity, and active material retention, resulting in higher energy density and cycling stability. This review highlights the diverse roles of cellulose in Li-S batteries, emphasizing its potential to enable sustainable and high-performance energy storage. The integration of cellulose into Li-S systems not only enhances electrochemical performance but also aligns with the goals of green energy technologies. Further advancements in cellulose processing and functionalization could pave the way for its broader application in next-generation battery systems.
引用
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页数:26
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