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首页> 外文期刊>Energy & environmental science >Nanomat Li–S batteries based on all-fibrous cathode/separator assemblies and reinforced Li metal anodes: towards ultrahigh energy density and flexibility
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Nanomat Li–S batteries based on all-fibrous cathode/separator assemblies and reinforced Li metal anodes: towards ultrahigh energy density and flexibility

机译:基于全纤维阴极/隔膜组件和增强Li金属阳极的Nanomat Li-S电池:朝向超高的能量密度和灵活性

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摘要

Lithium-sulfur (Li-S) batteries have attracted considerable attention as a promising alternative to current state-of-the-art lithium-ion batteries (LIBs), however, their practical use remains elusive, which becomes more serious upon application to flexible/wearable electronics. Here, we demonstrate a new class of nanomat Li-S batteries based on all-fibrous cathode-separator assemblies and conductive nonwoven-reinforced Li metal anodes as an unprecedented strategy toward ultrahigh energy density and mechanical flexibility. Sulfur cathodes, which are fibrous mixtures of sulfur-deposited multi-walled carbon nanotubes and single-walled carbon nanotubes, are monolithically integrated with bi-layered (pristine cellulose nanofiber (CNF)-anionic CNF) paper separators, resulting in metallic foil current collector-free, all-fibrous cathode-separator assemblies. The cathode-separator assemblies, driven by their all-fibrous structure (contributing to three-dimensional bi-continuous electron/ion conduction pathways) and anionic CNFs (suppressing the shuttle effect via electrostatic repulsion), improve redox kinetics, cyclability and flexibility. Nickel-/copper-plated conductive poly (ethylene terephthalate) nonwovens are physically embedded into Li foils to fabricate reinforced Li metal anodes with dimensional/electrochemical superiority. Driven by the structural uniqueness and chemical functionalities, the nanomat Li-S cells provide exceptional improvements in electrochemical performance (the (cell-based) gravimetric/volumetric energy density = 457 W h kg(cell)(-1)/565 W h L-cell(-1) and the cycling performance (over 500 cycles) under 110% capacity excess of the Li metal anode) and mechanical deformability (they even can be crumpled).
机译:锂 - 硫磺(LI-S)电池吸引了相当大的关注,因为目前最先进的锂离子电池(LIBS)的有希望的替代品,然而,它们的实际使用仍然难以捉摸,这在柔性时变得更加严重/可穿戴电子产品。在这里,我们展示了基于全纤维阴极分离器组件的新类纳米LI-S电池和导电非织造加强Li金属阳极作为超高能量密度和机械柔性的前所未有的策略。硫阴极是含硫的多壁碳纳米管和单壁碳纳米管的纤维混合物,与双层(原始纤维素纳米纤维(CNF)-IoniC CNF)纸分离器单片整体,导致金属箔集电器-Free,全纤维阴极分离器组件。由其全纤维结构(有助于三维双连续电子/离子传导途径)和阴离子CNFS(通过静电排斥抑制梭效果)驱动的阴极分离器组件,改善氧化还原动力学,可接触性和柔韧性。镍/镀铜导电聚(乙二醇酯)非织造织物物理地嵌入锂箔中,以制造具有尺寸/电化学优势的增强LI​​金属阳极。由结构唯一性和化学函数驱动,纳米马特Li-S细胞在电化学性能方面提供了卓越的改善((基于细胞基)重量/体积能密度= 457WH kg(细胞)( - 1)/ 565 W H L. -Cell(-1)和循环性能(超过500个循环),在Li金属阳极容量超过110%以下)和机械变形性(它们甚至可以皱折)。

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  • 来源
    《Energy & environmental science》 |2019年第1期|177-186|共10页
  • 作者单位

    Ulsan Natl Inst Sci & Technol UNIST Sch Energy & Chem Engn Dept Energy Engn Ulsan 44919 South Korea;

    Ulsan Natl Inst Sci & Technol UNIST Sch Energy & Chem Engn Dept Energy Engn Ulsan 44919 South Korea;

    Ulsan Natl Inst Sci & Technol UNIST Sch Energy & Chem Engn Dept Energy Engn Ulsan 44919 South Korea;

    Natl Inst Forest Sci Dept Forest Prod Seoul 02455 South Korea;

    Natl Inst Forest Sci Dept Forest Prod Seoul 02455 South Korea;

    LG Chem Future Technol Res Ctr Seoul 07796 South Korea;

    Natl Inst Forest Sci Dept Forest Prod Seoul 02455 South Korea;

    Ulsan Natl Inst Sci & Technol UNIST Sch Energy & Chem Engn Dept Energy Engn Ulsan 44919 South Korea;

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