Ether-compatible sulfurized polyacrylonitrile cathode with excellent performance enabled by fast kinetics via selenium doping

Серосодержащий полиакрилонитрильный катод, совместимый с эфирными электролитами и обладающий превосходными характеристиками благодаря ускоренной кинетике, обеспеченной легированием селеном
Xin Chen, Linfeng Peng, Lihui Wang, Jiaqiang Yang, Zhangxiang Hao, Jingwei Xiang, Kai Yuan, Yunhui Huang, Bin Shan, Lixia Yuan, Jia Xie
2019-03-04

ether electrolyteslithium-sulfur batteriespolysulfide dissolutionselenium dopingsulfurized polyacrylonitrile
Abstract Sulfurized polyacrylonitrile is suggested to contain S n ( n ≤ 4) and shows good electrochemical performance in carbonate electrolytes for lithium sulfur batteries. However inferior results in ether electrolytes suggest that high solubility of Li 2 S n ( n ≤ 4) trumps the limited redox conversion, leading to dissolution and shuttling. Here, we introduce a small amount of selenium in sulfurized polyacrylonitrile to accelerate the redox conversion, delivering excellent performance in both carbonate and ether electrolytes, including high reversible capacity (1300 mA h g −1 at 0.2 A g −1 ), 84% active material utilization and high rate (capacity up to 900 mA h g −1 at 10 A g −1 ). These cathodes can undergo 800 cycles with nearly 100% Coulombic efficiency and ultralow 0.029% capacity decay per cycle. Polysulfide dissolution is successfully suppressed by enhanced reaction kinetics. This work demonstrates an ether compatible sulfur cathode involving intermediate Li 2 S n ( n ≤ 4), attractive rate and cycling performance, and a promising solution towards applicable lithium-sulfur batteries.
1
Enhanced reaction kinetics suppress polysulfide dissolution, overcoming the poor ether-electrolyte performance typically associated with sulfurized polyacrylonitrile containing Li2Sn intermediates (n ≤ 4).
2
Selenium doping accelerates redox conversion in sulfurized polyacrylonitrile, enabling compatibility with both carbonate and ether electrolytes.
3
The cathode maintains high-rate performance, reaching a capacity of up to 900 mA h g−1 at 10 A g−1.
4
The material operates for 800 cycles with nearly 100% Coulombic efficiency and an ultralow capacity decay of 0.029% per cycle.
5
The selenium-doped cathode delivers a reversible capacity of 1300 mA h g−1 at 0.2 A g−1 and utilizes 84% of the active material.

selenium-doped sulfurized polyacrylonitrile cathodes for lithium–sulfur batteries in carbonate and ether electrolytes

the effects of selenium doping on redox-conversion kinetics, polysulfide dissolution and shuttling, active-material utilization, rate capability, reversible capacity, and cycling stability

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2019-03-04
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Xin Chen
Linfeng Peng
Lihui Wang
Jiaqiang Yang
Zhangxiang Hao
Jingwei Xiang
Kai Yuan
Yunhui Huang
Bin Shan
Lixia Yuan
Jia Xie
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