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Design and Construction of Sodium Polysulfides Defense System for Room‐Temperature Na–S Battery

机译:室温Na-S电池多硫化钠防御系统的设计与构建

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摘要

Room‐temperature Na–S batteries are facing one of the most serious challenges of charge/discharge with long cycling stability due to the severe shuttle effect and volume expansion. Herein, a sodium polysulfides defense system is presented by designing and constructing the cathode‐separator double barriers. In this strategy, the hollow carbon spheres are decorated with MoS (HCS/MoS ) as the S carrier (S@HCS/MoS ). Meanwhile, the HCS/MoS composite is uniformly coated on the surface of the glass fiber as the separator. During the discharge process, the MoS can adsorb soluble polysulfides (NaPSs) intermediates and the hollow carbon spheres can improve the conductivity of S as well as act as the reservoir for electrolyte and NaPSs, inhibiting them from entering the anode to make Na deteriorate. As a result, the cathode‐separator group applied to room‐temperature Na–S battery can enable a capacity of ≈1309 mAh g at 0.1 C and long cycling life up to 1000 cycles at 1 C. This study provides a novel and effective way to develop durable room‐temperature Na–S batteries.
机译:由于严重的穿梭效应和体积膨胀,室温Na-S电池面临着最严峻的充电/放电挑战之一,即长循环稳定性。在此,通过设计和构建阴极隔板双屏障,提出了一种多硫化钠防御系统。在此策略中,空心碳球以MoS(HCS / MoS)作为S载体(S @ HCS / MoS)装饰。同时,将HCS / MoS复合材料均匀地涂覆在玻璃纤维的表面作为隔膜。在放电过程中,MoS可以吸附可溶性多硫化物(NaPSs)中间体,中空碳球可以提高S的电导率,还可以充当电解质和NaPSs的储存库,从而阻止它们进入阳极,使Na变质。结果,应用于室温Na-S电池的阴极隔板组可以在0.1 C时实现≈1309mAh g的容量,并在1 C时具有高达1000次循环的长循环寿命。这项研究提供了一种新颖有效的方法开发耐用的Na-S室温电池。

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