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首页> 外文期刊>Journal of power sources >Nanostructured lithium sulfide materials for lithium-sulfur batteries
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Nanostructured lithium sulfide materials for lithium-sulfur batteries

机译:锂硫电池用纳米结构硫化锂材料

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Upon the maturation and saturation of Li-ion battery technologies, the demand for the development of energy storage systems with higher energy densities has surged to meet the needs of key markets such as electric vehicles. Among the many next generation high-energy storage options, the Li-S battery system is considered particularly close to mass commercialization because of its low cost and the natural abundance of sulfur. In this review, we focus on nanostructured Li2S materials for Li-S batteries. Due to a lithium source in its molecular structure, Li2S can be coupled with various Li-free anode materials, thereby giving it the potential to surmount many of the problems related with a Li-metal anode. The hurdles that impede the full utilization of Li2S materials include its high activation barrier and the low electrical conductivity of bulk Li2S particles. Various strategies that can be used to assist the activation process and facilitate electrical transport are analyzed. To provide insight into the opportunities specific to Li2S materials, we highlight some major advances and results that have been achieved in the development of metal Li-free full cells and all-solid-state cells based on Li2S cathodes. (C) 2016 Elsevier B.V. All rights reserved.
机译:随着锂离子电池技术的成熟和饱和,对具有更高能量密度的能量存储系统的开发需求已激增,以满足诸如电动汽车等关键市场的需求。在许多下一代高能存储选项中,锂硫电池系统因其低成本和自然的硫磺含量而被认为特别接近大规模商业化。在这篇评论中,我们专注于用于Li-S电池的纳米结构Li2S材料。由于锂分子结构中的锂源,Li2S可以与各种无锂阳极材料偶联,从而使其有可能克服许多与锂金属阳极有关的问题。阻碍Li2S材料充分利用的障碍包括其高活化势垒和块状Li2S颗粒的低电导率。分析了可用于协助激活过程和促进电传输的各种策略。为了深入了解特定于Li2S材料的机会,我们重点介绍了在开发基于Li2S阴极的无锂金属全电池和全固态电池方面取得的一些重大进展和成果。 (C)2016 Elsevier B.V.保留所有权利。

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