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首页> 外文期刊>Journal of power sources >Monoclinic sulfur cathode utilizing carbon for high-performance lithium sulfur batteries
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Monoclinic sulfur cathode utilizing carbon for high-performance lithium sulfur batteries

机译:单斜碳硫阴极,用于高性能锂硫电池

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Sulfur cathodes for lithium sulfur batteries have been designed to be combined with conductive carbon because the insulating nature of sulfur causes low active material utilization and poor rate capability. This paper is the first to report that carbon can induce a phase transition in a sulfur cathode. The stable form of a sulfur crystal at ambient temperature is orthorhombic sulfur. We found that monoclinic sulfur becomes more stable than orthorhombic sulfur if carbon atoms penetrate into the sulfur at elevated temperatures and the carbon density exceeds a threshold of C0.3S8. The high stability of the carbon containing monoclinic sulfur persists during lithiation and is attributed to locally formed linear SC3S chains with marked stability. This study provides a novel perspective on the role of carbon in the sulfur cathode and suggests control of the crystal phase of electrodes by composite elements as a new way of designing efficient electrode materials. (C) 2016 Elsevier B.V. All rights reserved.
机译:锂硫电池的硫阴极已设计为与导电碳结合使用,因为硫的绝缘性导致活性物质利用率低和倍率性能差。该论文首次报道碳可以在硫阴极中诱导相变。硫晶体在环境温度下的稳定形式是正交硫。我们发现,如果碳原子在高温下渗透到硫中并且碳密度超过C0.3S8的阈值,则单斜晶硫比斜方硫更稳定。含锂的单斜晶硫的高稳定性在锂化过程中持续存在,这归因于局部形成的线性SC3S链,具有明显的稳定性。这项研究提供了关于碳在硫阴极中的作用的新观点,并建议通过复合元素控制电极的晶相,这是设计高效电极材料的新方法。 (C)2016 Elsevier B.V.保留所有权利。

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