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首页> 外文期刊>Advanced energy materials >Tuning Transition Metal Oxide-Sulfur Interactions for Long Life Lithium Sulfur Batteries: The 'Goldilocks' Principle
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Tuning Transition Metal Oxide-Sulfur Interactions for Long Life Lithium Sulfur Batteries: The 'Goldilocks' Principle

机译:调整过渡金属氧化物 - 硫相互作用,长寿命锂硫电池:“金发姑娘”原则

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摘要

The lithium-sulfur battery is a compelling energy storage system because its high theoretical energy density exceeds Li-ion batteries at much lower cost, but applications are thwarted by capacity decay caused by the polysulfide shuttle. Here, proof of concept and the critical metrics of a strategy to entrap polysulfides within the sulfur cathode by their reaction to form a surface-bound active redox mediator are demonstrated. It is shown through a combination of surface spectroscopy and cyclic voltammetry studies that only materials with redox potentials in a targeted window react with polysulfides to form active surface-bound polythionate species. These species are directly correlated to superior Li-S cell performance by electrochemical studies of high surface area oxide cathodes with redox potentials below, above, and within this window. Optimized Li-S cells yield a very low fade rate of 0.048% per cycle. The insight gained into the fundamental surface mechanism and its correlation to the stability of the electrochemical cell provides a bridge between mechanistic understanding and battery performance essential for the design of high performance Li-S cells.
机译:锂 - 硫磺电池是一种引人注目的能量存储系统,因为其高理论能量密度以低成本超过锂离子电池,但通过多硫化物梭子造成的容量衰变,应用被挫败。这里,通过其反应形成概念的概念证明和策略的临界度量以形成硫阴极内的多硫化物以形成表面结合的活性氧化还原介体。它通过表面光谱和循环伏安法研究的组合示出,即仅在靶向窗口中具有氧化还原电位的材料与多硫化物反应以形成活性表面结合的多分子物质。这些物种通过高表面积氧化物阴极的电化学研究与下面的氧化还原电位的电化学研究直接相关,上面,在该窗口内,通过氧化还原电位的电化学研究。优化的Li-S细胞产生每周期0.048%的低褪色率。从电化学电池的稳定性中获得的洞察力及其与电化学电池稳定性的相关性提供了一种机械理解与电池性能之间的桥梁,对于高性能Li-S细胞设计。

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  • 来源
    《Advanced energy materials》 |2016年第6期|1501636.1-1501636.9|共9页
  • 作者单位

    Univ Waterloo Dept Chem 200 Univ Ave Waterloo ON N2L 3G1 Canada|Univ Waterloo Waterloo Inst Nanotechnol 200 Univ Ave Waterloo ON N2L 3G1 Canada;

    Univ Waterloo Dept Chem 200 Univ Ave Waterloo ON N2L 3G1 Canada|Univ Waterloo Waterloo Inst Nanotechnol 200 Univ Ave Waterloo ON N2L 3G1 Canada;

    Karlsruhe Inst Technol Inst Nanotechnol Battery & Electrochem Lab Hermann von Helmholtz Pl 1 D-76344 Eggenstein Leopoldshafen Germany;

    Univ Waterloo Dept Chem 200 Univ Ave Waterloo ON N2L 3G1 Canada|Univ Waterloo Waterloo Inst Nanotechnol 200 Univ Ave Waterloo ON N2L 3G1 Canada;

    Univ Waterloo Dept Chem 200 Univ Ave Waterloo ON N2L 3G1 Canada|Univ Waterloo Waterloo Inst Nanotechnol 200 Univ Ave Waterloo ON N2L 3G1 Canada;

    Univ Waterloo Dept Chem 200 Univ Ave Waterloo ON N2L 3G1 Canada|Univ Waterloo Waterloo Inst Nanotechnol 200 Univ Ave Waterloo ON N2L 3G1 Canada;

    Univ Waterloo Dept Chem 200 Univ Ave Waterloo ON N2L 3G1 Canada|Univ Waterloo Waterloo Inst Nanotechnol 200 Univ Ave Waterloo ON N2L 3G1 Canada;

    Univ Waterloo Dept Chem 200 Univ Ave Waterloo ON N2L 3G1 Canada|Univ Waterloo Waterloo Inst Nanotechnol 200 Univ Ave Waterloo ON N2L 3G1 Canada;

    Univ Waterloo Dept Chem 200 Univ Ave Waterloo ON N2L 3G1 Canada|Univ Waterloo Waterloo Inst Nanotechnol 200 Univ Ave Waterloo ON N2L 3G1 Canada;

    Karlsruhe Inst Technol Inst Nanotechnol Battery & Electrochem Lab Hermann von Helmholtz Pl 1 D-76344 Eggenstein Leopoldshafen Germany;

    Karlsruhe Inst Technol Inst Nanotechnol Battery & Electrochem Lab Hermann von Helmholtz Pl 1 D-76344 Eggenstein Leopoldshafen Germany;

    Karlsruhe Inst Technol Inst Nanotechnol Battery & Electrochem Lab Hermann von Helmholtz Pl 1 D-76344 Eggenstein Leopoldshafen Germany;

    Univ Waterloo Dept Chem 200 Univ Ave Waterloo ON N2L 3G1 Canada|Univ Waterloo Waterloo Inst Nanotechnol 200 Univ Ave Waterloo ON N2L 3G1 Canada;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Li-S batteries; polythionate; redox potential; sulfur hosts; transition metal oxides;

    机译:LI-S电池;多分子;氧化还原潜力;硫磺主体;过渡金属氧化物;

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