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Multifunctional Lithium Phytate/Carbon Nanotube Double-Layer-Modified Separators for High-Performance Lithium–Sulfur Batteries

Jing Hu, Zhenyu Wang, Huimin Yuan, Mingyang Yang, Jingjing Chen, Xuelian Fu, Zhiqiang Wang, Wen Luo, Yongcong Huang, Fangchang Zhang, Chen Liu, Zhouguang Lu

2024ACS Applied Materials & Interfaces15 citationsDOI

Abstract

Li dendrite and the shuttle effect are the two primary hindrances to the commercial application of lithium–sulfur batteries (LSBs). Here, a multifunctional separator has been fabricated via successively coating carbon nanotubes (CNTs) and lithium phytate (LP) onto a commercial polypropylene (PP) separator to improve the performance of LSBs. The LP coating layer with abundant electronegative phosphate group as permselective ion sieve not only reduces the polysulfide shuttle but also facilitates uniform Li + flux through the PP separator. And the highly conductive CNTs on the second layer act as a second collector to accelerate the reversible conversion of sulfide species. The synergistic effect of LP and CNTs further increases the electrolyte wettability and reaction kinetics of cells with a modified separator and suppresses the shuttle effect and growth of Li dendrite. Consequently, the LSBs present much enhanced rate performance and cyclic performance. It is expected that this study may generate an executable tactic for interface engineering of separator to accelerate the industrial application process of LSBs.

Topics & Concepts

Materials scienceLithium (medication)Carbon nanotubeLithium–sulfur batterySulfurLayer (electronics)Nanoarchitectures for lithium-ion batteriesCarbon fibersNanotechnologySeparator (oil production)Chemical engineeringAnodeComposite numberComposite materialElectrodeElectrochemistryMetallurgyChemistryEngineeringPhysical chemistryMedicineThermodynamicsEndocrinologyPhysicsAdvanced Battery Materials and TechnologiesAdvancements in Battery MaterialsAdvanced Battery Technologies Research
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