Design improvement of flexible textile aluminium-air battery

A. Vališevskis, Uģis Briedis, Žaneta Juchnevičienė, M. Jucienė, M. Carvalho
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引用次数: 5

Abstract

Abstract Lately there have been a growing demand for energy sources that are suitable for powering smart textiles. A number of promising prototypes have been developed, many of which address important issues, but only to face new challenges. In this paper we propose a new approach to the development of energy source for smart textiles in order to overcome these challenges. The main feature of the new design is that the electrolyte is separated from the electrodes and is applied only when the cell needs to be activated. This makes shelf-life virtually infinite. We stress that this solution is suitable for specific applications only, outlined in the paper. The main aim of this study is to test viability of such an approach, using only textile materials. The presented electrical characteristics of the new battery should be assessed in this context. The main components of the battery include aluminium anode, air cathode and the shell made from cotton fabric. The paper focuses on the choice of textile-based materials for the anode and the cathode, since non-textile materials were used in these components in the original design. Besides that, the pure metal wire meshes have shown to be prone to oxidation. The new materials should address that issue as well. Electrical characteristics of the new design of the battery are measured, which confirm that there is no loss in battery performance. Next steps for further development of a multicell flexible textile battery, based on the results presented in this study, are outlined at the end of the paper.
柔性纺织铝-空气电池的设计改进
近年来,人们对智能纺织品所需能源的需求不断增长。许多有前途的原型已经开发出来,其中许多解决了重要问题,但只是面对新的挑战。为了克服这些挑战,本文提出了智能纺织品能源开发的新途径。新设计的主要特点是电解液与电极分离,仅在需要激活电池时使用。这使得它的保质期几乎是无限的。我们强调,这种解决方案只适用于特定的应用,概述在论文中。本研究的主要目的是测试这种方法的可行性,仅使用纺织材料。在这种情况下,应该评估新电池的电气特性。电池的主要组成部分包括铝阳极、空气阴极和棉织物外壳。由于在最初的设计中,阳极和阴极使用了非纺织材料,因此本文的重点是纺织品基材料的选择。除此之外,纯金属丝网还容易被氧化。新材料也应该解决这个问题。对新设计电池的电气特性进行了测量,证实电池性能没有损失。基于本研究的结果,本文最后概述了进一步开发多电池柔性纺织电池的下一步步骤。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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