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Natural Fiber Welded Electrode Yarns for Knittable Textile Supercapacitors

机译:可编织纺织超级电容器用天然纤维焊接电极纱

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摘要

Natural fiber welded (NFW) yarns embedded with porous carbon ­materials are described for applications as electrodes in textile electrochemical capacitors. With this fabrication technique, many kinds of carbons can be embedded into cellulose based yarns and subsequently knitted into full ­fabrics on industrial knitting machines. Yarns welded with carbon and ­stainless steel have device capacitances as high as 37 mF cm-1, one of the highest reported values for carbon-based yarns. The versatility of this ­technique to weld any commercially available cellulose yarn with any ­micro- or nanocarbon means properties can be tuned for specific applications. Most importantly, it is found that despite having full flexibility, increased strength, and good electrochemical performance, not all of the electrode yarns are ­suitable for knitting. Therefore, it is recommended that all works reporting on fiber/yarn capacitors for wearables attempt processing into full fabrics.
机译:嵌入了多孔碳纤维材料的天然纤维焊接(NFW)纱线被描述为在纺织电化学电容器中用作电极。利用这种制造技术,可以将多种碳纤维嵌入纤维素基纱线中,然后在工业针织机上将其编织成完整的纤维。用碳和不锈钢焊接的纱线的器件电容高达37 mF cm-1,是碳基纱线报道的最高值之​​一。这种技术的多功能性可以焊接任何具有微碳或纳米碳的市售纤维素纱,因此可以针对特定应用调整性能。最重要的是,发现尽管具有充分的柔韧性,增加的强度和良好的电化学性能,但并非所有的电极纱线都适合针织。因此,建议所有有关可穿戴设备的纤维/纱线电容器的报告都应尝试加工成完整的织物。

著录项

  • 来源
    《Advanced energy materials》 |2015年第4期|1-8|共8页
  • 作者单位

    A. J. Drexel Nanomaterials Institute and the Materials Science and Engineering Department Drexel University Philadelphia PA USA;

    Shima Seiki Haute Technology Laboratory at the ExCITe Center and the Antoinette Westphal College of Media Arts and Design Drexel University Philadelphia PA USA;

    United States Naval Academy Department of Chemistry Annapolis MD USA;

    Bradley University Mund-Lagowski Department of Chemistry Peoria IL USA;

    United States Naval Academy Department of Chemistry Annapolis MD USA;

    A. J. Drexel Nanomaterials Institute and the Materials Science and Engineering Department Drexel University Philadelphia PA USA;

    Air Force Office of Scientific Research Complex Materials and Devices Department Arlington VA USA;

    United States Naval Academy Department of Chemistry Annapolis MD USA;

    A. J. Drexel Nanomaterials Institute and the Materials Science and Engineering Department Drexel University Philadelphia PA USA;

    Shima Seiki Haute Technology Laboratory at the ExCITe Center and the Antoinette Westphal College of Media Arts and Design Drexel University Philadelphia PA USA;

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

    supercapacitors natural fibers; welding; smart textiles; wearable electronics;

    机译:超级电容器天然纤维;焊接;智能纺织品;可穿戴电子产品;

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