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A Polysulfide-Trapping Interface for Electrochemically Stable Sulfur Cathode Development

机译:用于电化学稳定硫阴极开发的多硫化物捕集界面

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Lithium-sulfur (Li-S) cells have a strong edge to become an inexpensive, high-capacity rechargeable battery system. However, currently, several prohibitive challenges occur within the sulfur core, especially the polysulfide-diffusion problem. To address these scientific issues, we present here a boron-doped multiwalled carbon nanotube coated separator (B-CNT-coated separator). The B-CNT-coated separator creates a polysulfide trap between the pure sulfur cathode and the polymeric separator as a "polysulfide-trapping interface," stabilizing the active material and allowing the dissolved polysulfides to activate the bulk sulfur cores. Therefore, the dissolved polysulfides change from causing fast capacity fade to assisting with the activation of bulk sulfur clusters in pure sulfur cathodes. Moreover, the heteroatom-doped polysulfide-trapping interface is currently one of the missing pieces of carbon-coated separators, which might inspire further studies in its effect and battery chemistry. Li-S cells employing B-CNT-coated separators (i) exhibit improved cyclability at various cycling rates from 0.2C to 1.0C rate and (ii) attain a high capacity retention rate of 60% with a low capacity fade rate of 0.04% cycle(-1) after 500 cycles. We believe that our B-CNT-coated separator could light up a new research area for integrating heteroatom-doped carbon into the flexible, lightweight, carbon-coated separator.
机译:锂硫(Li-S)电池具有强大的优势,可以成为便宜的大容量可充电电池系统。但是,目前,硫芯内部出现了一些令人难以置信的挑战,特别是多硫化物扩散问题。为了解决这些科学问题,我们在这里介绍一种掺硼的多壁碳纳米管涂层隔板(B-CNT涂层隔板)。涂有B-CNT的隔膜在纯硫阴极和聚合物隔膜之间形成了一个多硫化物阱,称为“多硫化物捕获界面”,从而稳定了活性物质,并使溶解的多硫化物活化了大部分的硫核。因此,溶解的多硫化物从引起快速容量衰减的过程转变为协助活化纯硫阴极中的大量硫簇。此外,杂原子掺杂的多硫化物捕集界面是目前碳涂层隔板缺少的部件之一,这可能会激发对其效果和电池化学的进一步研究。采用B-CNT涂层隔离膜的Li-S电池(i)在0.2C至1.0C的各种循环速率下均显示出改善的循环性,并且(ii)达到60%的高容量保持率和0.04%的低容量衰减率500个循环后再循环(-1)。我们相信,我们的B-CNT涂层隔离膜将为将杂原子掺杂的碳整合到柔性,轻质,碳涂层隔离膜中提供新的研究领域。

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