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Improved cycling stability of lithium-sulphur batteries by enhancing the retention of active material with a sandwiched hydrothermally treated graphite film

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posted on 2024-11-15, 02:36 authored by Yuede Pan, Shulei Chou, Hua LiuHua Liu, Shi DouShi Dou
A new lithium-sulphur battery with a hydrothermally treated graphite film sandwiched between the separator and the sulphur cathode shows increased capacity, enhanced cycling stability and improved coulombic efficiency. After 50 cycles, a high capacity of 631 mA h g-1 is maintained, compared to 203 mA h g-1 for the Li-S battery with conventional configuration. Moreover, the coulombic efficiency is increased to near 100% from around 94%. This improved electrochemical performance could be attributed to the new cell configuration, because the graphite film greatly retains the active material by alleviating the polysulphide shuttling problem and providing extra reaction sites for sulphur species.

History

Citation

Pan, Y., Chou, S., Liu, H. & Dou, S. (2016). Improved cycling stability of lithium-sulphur batteries by enhancing the retention of active material with a sandwiched hydrothermally treated graphite film. RSC Advances, 6 (41), 34131-34136.

Journal title

RSC Advances

Volume

6

Issue

41

Pagination

34131-34136

Language

English

RIS ID

108024

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