Suppr超能文献

用于电子纺织品的基于碳纳米线汗液的超级电容器。

Carbon threads sweat-based supercapacitors for electronic textiles.

作者信息

Lima Nuno, Baptista Ana C, Faustino Bruno M Morais, Taborda Sofia, Marques Ana, Ferreira Isabel

机构信息

CENIMAT/i3N, Departamento de Ciência dos Materiais, Faculdade de Ciências e Tecnologia, Universidade Nova de Lisboa, Caparica, 2829-516, Portugal.

出版信息

Sci Rep. 2020 May 7;10(1):7703. doi: 10.1038/s41598-020-64649-2.

Abstract

Flexible and stretchable energy-storage batteries and supercapacitors suitable for wearable electronics are at the forefront of the emerging field of intelligent textiles. In this context, the work here presented reports on the development of a symmetrical wire-based supercapacitor able to use the wearer's sweat as the electrolyte. The inner and outer electrodes consists of a carbon-based thread functionalized with a conductive polymer (polypyrrole) which improves the electrochemical performances of the supercapacitor. The inner electrode is coated with electrospun cellulose acetate fibres, as the separator, and the outer electrode is twisted around it. The electrochemical performances of carbon-based supercapacitors were analyzed using a simulated sweat solution and displayed a specific capacitance of 2.3 F.g, an energy of 386.5 mWh.kg and a power density of 46.4 kW.kg. Moreover, cycle stability and bendability studies were performed. Such energy conversion device has exhibited a stable electrochemical performance under mechanical deformation, over than 1000 cycles, which make it attractive for wearable electronics. Finally, four devices were tested by combining two supercapacitors in series with two in parallel demonstrating the ability to power a LED.

摘要

适用于可穿戴电子产品的柔性可拉伸储能电池和超级电容器处于智能纺织品新兴领域的前沿。在此背景下,本文所展示的工作报道了一种基于导线的对称超级电容器的开发,该超级电容器能够使用穿戴者的汗液作为电解质。内电极和外电极由用导电聚合物(聚吡咯)功能化的碳基纤维组成,这提高了超级电容器的电化学性能。内电极涂有静电纺丝醋酸纤维素纤维作为隔膜,外电极围绕其缠绕。使用模拟汗液溶液分析了碳基超级电容器的电化学性能,其比电容为2.3 F.g,能量为386.5 mWh.kg,功率密度为46.4 kW.kg。此外,还进行了循环稳定性和可弯曲性研究。这种能量转换装置在机械变形下经过超过1000次循环仍表现出稳定的电化学性能,这使其对可穿戴电子产品具有吸引力。最后,通过将两个超级电容器串联和两个并联组合来测试四个装置,展示了为发光二极管供电的能力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/97b8/7206100/af7647b44b98/41598_2020_64649_Fig1_HTML.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验