首页> 外文期刊>Journal of physical chemistry letters >Self-Assembled Protein Nanofilter for Trapping Polysulfides and Promoting Li+ Transport in Lithium–Sulfur Batteries
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Self-Assembled Protein Nanofilter for Trapping Polysulfides and Promoting Li+ Transport in Lithium–Sulfur Batteries

机译:用于捕获多硫化物并促进锂 - 硫电池中的锂 - 硫含量+ 运输的自组装蛋白纳米过滤器

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摘要

The diffusion of polysulfides in lithium–sulfur (Li–S) batteries represents a critical issue deteriorating the electrochemical performance. Here, borrowing the concepts from air filtration, we design and fabricate a protein-based nanofilter for effectively trapping polysulfides but facilitating Li~(+) transport. The unique porous structures are formed through a protein-directed self-assembly process, and the surfaces are functionalized by the protein residues. The experiments and molecular simulation results demonstrate that our polysulfide nanofilter can effectively trap the dissolved polysulfides and promote Li~(+) transport in Li–S batteries. When the polysulfide nanofilter is added in a Li–S battery, the electrochemical performance of the battery is significantly improved. Moreover, the contribution of the protein nanofilter to the ion transport is further analyzed by correlating filter properties and battery performance. This study is of universal significance for the understanding, design, and fabrication of advanced battery interlayers that can help realize good management of the ion transport inside advanced energy storage devices.
机译:多硫化物在锂 - 硫(Li-S)电池中的扩散代表了劣化电化学性能的临界问题。在这里,从空气过滤借鉴概念,我们设计和制造基于蛋白质的纳米过滤器,以有效地捕获多硫化物,但促进Li〜(+)运输。独特的多孔结构通过蛋白质为由的自组装工艺形成,并且表面通过蛋白质残余物官能化。实验和分子模拟结果表明,我们的多硫化物纳米过滤器可以有效地捕获溶解的多硫化物并促进Li-S电池中的Li〜(+)输送。当在LI-S电池中加入多硫化物纳米过滤器时,电池的电化学性能显着提高。此外,通过相关过滤性能和电池性能,进一步分析蛋白质纳米过滤器对离子传输的贡献。本研究对先进电池中间层的理解,设计和制造具有普遍意义,可以帮助实现高级能量存储装置内部的离子输送的良好管理。

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    School of Mechanical and Materials Engineering Washington State University Pullman Washington 99164 United States;

    School of Mechanical and Materials Engineering Washington State University Pullman Washington 99164 United States;

    School of Mechanical and Materials Engineering Washington State University Pullman Washington 99164 United States;

    Department of Chemistry Washington State University Pullman Washington 99164 United States;

    School of Mechanical and Materials Engineering Washington State University Pullman Washington 99164 United States;

    School of Mechanical and Materials Engineering Washington State University Pullman Washington 99164 United States;

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  • 正文语种 eng
  • 中图分类 物理化学(理论化学)、化学物理学;
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