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Highly Flexible Dye-sensitized Solar Cells Produced by Sewing Textile Electrodes on Cloth

机译:通过在布上缝制纺织电极生产的高柔性染料敏化太阳能电池

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Textile forms of solar cells possess special advantages over other types of solar cells, including their light weight, high flexibility, and mechanical robustness. Recent demand for wearable devices has promoted interest in the development of high-efficiency textile-based solar cells for energy suppliers. However, the weaving process occurs under high-friction, high-tension conditions that are not conducive to coated solar-cell active layers or electrodes deposited on the wire or strings. Therefore, a new approach is needed for the development of textile-based solar cells suitable for woven fabrics for wide-range application. In this report, we present a highly flexible, efficient DSSC, fabricated by sewing textile-structured electrodes onto casual fabrics such as cotton, silk, and felt, or paper, thereby forming core integrated DSSC structures with high energy-conversion efficiency (~5.8%). The fabricated textile-based DSSC devices showed high flexibility and high performance under 4-mm radius of curvature over thousands of deformation cycles. Considering the vast number of textile types, our textile-based DSSC devices offer a huge range of applications, including transparent, stretchable, wearable devices.
机译:纺织形式的太阳能电池比其他类型的太阳能电池具有特殊的优势,包括重量轻,柔韧性高和机械强度高。对可穿戴设备的最新需求已引起人们对用于能源供应商的基于纺织品的高效太阳能电池开发的兴趣。然而,编织过程在不利于涂覆的太阳能电池活性层或沉积在电线或细线上的电极的高摩擦,高张力条件下发生。因此,需要新的方法来开发适用于广泛应用的机织织物的基于纺织品的太阳能电池。在本报告中,我们提出了一种高度灵活,高效的DSSC,该DSSC是通过将纺织结构的电极缝到休闲织物(例如棉,丝绸,毛毡或纸)上而制成的,从而形成了具有高能量转换效率(约5.8 %)。所制造的基于纺织品的DSSC器件在数千个变形周期内的4 mm曲率半径下显示出高柔韧性和高性能。考虑到种类繁多的纺织品,我们基于纺织品的DSSC设备可提供广泛的应用,包括透明,可拉伸,可穿戴的设备。

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