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首页> 外文期刊>Journal of power sources >Functionalized polyimide separators enable high performance lithium sulfur batteries at elevated temperature
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Functionalized polyimide separators enable high performance lithium sulfur batteries at elevated temperature

机译:功能化的聚酰亚胺隔膜可在高温下实现高性能锂硫电池

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摘要

High temperature lithium-sulfur batteries are seldom investigated due in part to the lack of mechanical robust separators and the more serious parasitic polysulfide shuttle effects at elevated temperature. Here, we for the first time present high performance lithium-sulfur cells that can be cycled at elevated temperature of 100 degrees C via designing asymmetric functionalized polyimide-based separators using a facile and scalable blade-casting method. In this sandwich configuration, polyimide nonwovens act as electrochemically and mechanically robust skeleton while Super-P nanoparticles coating and poly (ethylene oxide)-integrated-lithium lanthanum zirconium oxide coating render additional functions of immobilizing polysulfides and inhibiting lithium dendrite growth, respectively. By virtue of the multifarious functions of the modified polyimide-based separator, a high specific capacity of 1474.3mAh g(-1) without severe over-charge behavior is also firstly demonstrated at a higher temperature of 100 degrees C. Additionally, Li-S cells using the modified polyimide -based separator deliver excellent cycling stability (only 0.2% capacity decay cycle(-1) on average exceeding 200 cycles at 80 degrees C) at a relatively high rate of 5C. The experimental results validate the pivotal role of newly designed separators for high performance lithium-sulfur chemistry especially at elevated temperature.
机译:很少研究高温锂硫电池,部分原因是缺乏机械坚固的隔板,并且在高温下寄生多硫化物的寄生效应更加严重。在这里,我们首次展示了高性能锂硫电池,该电池可以通过使用简便且可扩展的叶片浇铸方法设计不对称的功能化聚酰亚胺基隔膜,在100摄氏度的高温下循环使用。在这种三明治结构中,聚酰亚胺非织造布充当电化学和机械坚固的骨架,而Super-P纳米粒子涂层和聚(环氧乙烷)集成的锂镧锆锆涂层分别具有固定聚硫化物和抑制锂枝晶生长的附加功能。凭借改性聚酰亚胺基隔膜的多种功能,还首次在100摄氏度的较高温度下证明了高比容量1474.3mAh g(-1)而没有严重的过充电行为。此外,Li-S使用改良的基于聚酰亚胺的隔膜的电池在5C的较高速率下可提供出色的循环稳定性(在80摄氏度下平均只有0.2%的容量衰减循环(-1)平均超过200个循环)。实验结果验证了新设计的隔膜对高性能锂硫化学反应(尤其是在高温下)的关键作用。

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