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Inhibiting polysulfides diffusion of lithium-sulfur batteries using an acetylene black-CoS2 modified separator: Mechanism research and performance improvement

机译:乙炔黑-CoS2改性隔膜抑制锂硫电池中多硫化物的扩散:机理研究和性能改进

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摘要

Lithium-sulfur (Li-S) batteries are considered as one of the most promising chemistries in secondary energy storage field owing to their high energy density. However, the poor electrochemical performance mainly associated with the polysulfides shuttle has greatly hampered their practical application. Herein, a simple acetylene black (AB)-CoS2 coated separator is first designed to suppress the migration of polysulfides. The AB-CoS2 modified separator can not only efficiently capture the polysulfides by forming strong chemical bonding but also guarantee the rapid lithium ions diffusion. Moreover, the AB-CoS2 coating could serve as an upper current collector to accelerate electron transport for reinforcing the utilization of sulfur and ensuring the reactivation of the trapped active material. Consequently, the Li-S cell using AB-CoS2 modified separator shows a long-term cycling stability with an extremely low decay rate (0.09% per cycle) up to 450 cycles at a high rate of 2 C (3350 mA g(-1)). It also exhibits excellent rate capabilities, which maintains a capacity of 475 mAh g(-1) even at 4.0 C rate. (C) 2017 Elsevier B.V. All rights reserved.
机译:锂硫(Li-S)电池由于其高能量密度而被认为是二次能量存储领域中最有前途的化学物质之一。然而,主要与多硫化物梭有关的不良电化学性能极大地阻碍了它们的实际应用。本文中,首先设计了一种简单的乙炔黑(AB)-CoS2涂层隔板,以抑制多硫化物的迁移。 AB-CoS2改性隔膜不仅可以通过形成牢固的化学键有效捕获多硫化物,而且可以确保锂离子快速扩散。此外,AB-CoS2涂层可以用作上部集电器,以加速电子传输,从而增强硫的利用并确保捕获的活性材料的再活化。因此,使用AB-CoS2改性隔膜的Li-S电池在2 C(3350 mA g(-1)的高速率下,显示了高达450个循环的极低衰减率(每个循环0.09%)的长期循环稳定性))。它还具有出色的速率性能,即使在4.0 C速率下也可保持475 mAh g(-1)的容量。 (C)2017 Elsevier B.V.保留所有权利。

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