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Improving the Li-S battery performance by applying a combined interface engineering approach on the Li2S cathode

机译:通过在LI2S阴极上应用组合的界面工程方法来提高LI-S电池性能

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Lithium sulfide (Li2S) has been a promising candidate for Li-S battery cathode materials due to its high theoretical specific capacity and ability to be paired with safer lithium metal-free anodes. However, the low active material utilization and the short cycle life, which stem from the poor conductivity and the polysulfide dissolution-diffusion problem, hinder the further application of Li-S batteries. Herein, a combined interface engineering approach, which includes an ion-selective sulfonated poly(ether ether ketone) (SPEEK) membrane and a freestanding single wall carbon nanotube (SWCNT)/reduced graphene oxide (rGO) interlayer, has been demonstrated successfully to enhance the performance of Li-S batteries with a Li2S cathode. The SPEEK membrane is integrated into the Li2S cathode, functioning as both a barrier of the polysulfides and a highway for Li+ ions, due to its negatively charged ionic nanochannels which have been proved to mediate high-speed ion transport. With SPEEK, the cell presents high rate performance (above 400 mA h g(-1) at 10 A g(-1)). Furthermore, to balance the conductivity of ions and electrons, a SWCNT/rGO interlayer is inserted between the cathode and the separator to improve the electronic conductivity, block the polysulfides, and provide space for sustained electrochemical reactions, resulting in improved capacity and life. With the interlayer, a high capacity of 620 mA h g(-1) is retained after 80 cycles.
机译:由于其具有高理论特异性容量和与更安全的锂金属阳极配对的能力,硫化物锂(Li2S)是Li-S电池阴极材料的有希望的候选者。然而,低活性材料利用率和短循环寿命,源于差的导电性和多硫化物溶解 - 扩散问题,阻碍了Li-S电池的进一步应用。在此,成功地证明了一种组合的界面工程方法,其包括离子选择性磺化聚(醚酮)(Speek)膜和独立的单壁碳纳米管(SWCNT)/还原氧化物(RGO)中间层。 Li-S电池用LI2S阴极的性能。将Speek膜整合到Li 2 S阴极中,由于其带负电的离子纳米纳米被证明是介导高速离子转运的带负电离子纳米,其作为多硫化物的屏障和Li +离子的高速公路。用Speek,该电池呈现高速率性能(10Ag(-1)的高速率性能(400 mA H(-1))。此外,为了平衡离子和电子的电导率,在阴极和隔膜之间插入SWCNT / RGO中间层,以改善电子导电性,阻断多硫化物,并为持续的电化学反应提供空间,从而提高能力和寿命。通过中间层,在80次循环之后,高容量为620mA H(-1)。

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