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首页> 外文期刊>Advanced energy materials >On the Way Toward Understanding Solution Chemistry of Lithium Polysulfides for High Energy Li–S Redox Flow Batteries
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On the Way Toward Understanding Solution Chemistry of Lithium Polysulfides for High Energy Li–S Redox Flow Batteries

机译:理解用于高能Li–S氧化还原液流电池的多硫化锂溶液化学的方法

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摘要

Lithium–sulfur (Li–S) redox flow battery (RFB) is a promising candidate for high energy large-scale energy storage application due to good solubility of long-chain polysulfide species and low cost of sulfur. Here, the fundamental understanding and control of lithium polysulfide chemistry are studied to enable the development of liquid phase Li–S redox flow prototype cells. These differ significantly from conventional static Li–S batteries targeting for vehicle electrification. A high solubility of the different lithium polysulfides generated at different depths of discharge and states of charge is required for a flow battery in order to take full advantage of the multiple electron transitions. A new dimethyl sulfoxide based electrolyte is proposed for Li–S RFBs, which not only enables the high solubility of lithium polysulfide species, especially for the short-chain species, but also results in excellent cycling with a high Coulombic efficiency. The challenges and opportunities for the Li–S redox flow concept have also been discussed in depth.
机译:锂-硫(Li-S)氧化还原液流电池(RFB)由于长链多硫化物种类的良好溶解性和低硫成本而成为高能量大规模储能应用的有希望的候选者。在这里,对多硫化锂化学的基本理解和控制进行了研究,以使液相Li–S氧化还原流原型电池的开发成为可能。这些与用于车辆电动化的常规静态Li–S电池明显不同。液流电池需要在不同的放电深度和电荷状态下产生的不同的多硫化锂高溶解度,以便充分利用多个电子跃迁。提出了一种用于Li–S RFB的新的基于二甲基亚砜的电解液,该电解液不仅可以使多硫化锂物质(特别是短链物质)具有较高的溶解度,而且还具有出色的库伦效率和良好的循环性能。 Li-S氧化还原流动概念的挑战和机遇也得到了深入讨论。

著录项

  • 来源
    《Advanced energy materials 》 |2015年第16期| 1-7| 共7页
  • 作者单位

    Joint Center for Energy Storage Research USA;

    Pacific Northwest National Laboratory Richland WA USA;

    Joint Center for Energy Storage Research USA;

    Pacific Northwest National Laboratory Richland WA USA;

    Pacific Northwest National Laboratory Richland WA USA;

    Joint Center for Energy Storage Research USA;

    Pacific Northwest National Laboratory Richland WA USA;

    Joint Center for Energy Storage Research USA;

    Pacific Northwest National Laboratory Richland WA USA;

    Pacific Northwest National Laboratory Richland WA USA;

    Joint Center for Energy Storage Research USA;

    Pacific Northwest National Laboratory Richland WA USA;

    Joint Center for Energy Storage Research USA;

    Pacific Northwest National Laboratory Richland WA USA;

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

    Li–S redox flow battery; lithium polysulfides; solution chemistry;

    机译:Li-S氧化还原液流电池;多硫化锂;溶液化学;

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