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Toward Flexible and Wearable Zn–Air Batteries from Cotton Textile Waste

机译:从棉纺织废料中获取柔性可穿戴锌空气电池

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Considering the environmental problems caused by a large amount of cotton textile waste and its possible applications in flexible electrodes, it is very promising to reuse the cotton textile waste as an electrode material, reducing the cost of flexible electrodes and alleviating environmental problems. In this work, we present a rechargeable flexible Zn–air battery based on cotton textile waste, which employs Ni-metallized cotton textile waste (NMCTW) as a flexible substrate for Zn anodes and air cathodes. The transparent NiFe hydroxide thin film horizontally grown on the surface of the NMCTW substrate was synthesized in situ by the electrodeposition method, which exhibits excellent catalytic activity because of the high surface area of the two-dimensional (2D) thin film, large contact area between the thin film and substrate, and fast charge transport of the 2D thin-film structure. In view of the high catalytic performance of the NiFe hydroxide thin film, it was used as the catalytic material of the air cathode for the flexible Zn–air battery. The assembled Zn–air battery based on cotton textile waste demonstrated a good rate performance and outstanding charge and discharge cycling stability. The assembled Zn–air battery was applied to power the light-emitting diode, which exhibits exceptional flexibility and stable output power even under severe mechanical bending deformation, proving the feasibility for its application in flexible electronics.
机译:考虑到由大量棉纺织废料引起的环境问题及其在柔性电极中的可能应用,将棉纺织废料再用作电极材料,降低柔性电极的成本并减轻环境问题是非常有前途的。在这项工作中,我们介绍了一种基于棉纺织废料的可充电柔性Zn-空气电池,该电池采用镍金属化棉纺织废料(NMCTW)作为锌阳极和空气阴极的柔性基材。通过电沉积法原位合成在NMCTW基板表面水平生长的透明NiFe氢氧化物薄膜,由于二维(2D)薄膜的表面积大,彼此之间的接触面积大,因此显示出优异的催化活性薄膜和基板,以及2D薄膜结构的快速电荷传输。鉴于NiFe氢氧化物薄膜的高催化性能,它被用作柔性Zn-空气电池的空气阴极的催化材料。以棉纺织废料为基础的锌空气电池组具有良好的倍率性能和出色的充放电循环稳定性。组装好的Zn-空气电池用于为发光二极管供电,该发光二极管即使在剧烈的机械弯曲变形下也具有出色的柔韧性和稳定的输出功率,证明了其在柔性电子产品中的可行性。

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