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为具有宽气候适应性的光可再充电能量织物绣花。

Embroidering a Filmsy Photorechargeable Energy Fabric with Wide Weather Adaptability.

机构信息

State Key Laboratory for Manufacturing Systems Engineering , Xian Jiaotong University , Xi'an 710049 , China.

出版信息

ACS Appl Mater Interfaces. 2020 Jan 22;12(3):3654-3660. doi: 10.1021/acsami.9b19731. Epub 2020 Jan 9.

Abstract

To provide a light and breathable self-charging wearable power source adaptable for various weather conditions and body movements, couching embroidery has been proposed as an industrially scalable electrode-to-device assembling strategy, rather than a decorative textile pattern making process. Various types of cable electrodes and device units with a large size and shape difference were directly and reliably assembled on a light and soft tulle to form either photovoltaic or battery devices, which can be further integrated following any irregular pattern and any electrical connection design. Under sunlight, a transparent tulle as a glove or scarf can be charged up at a power of 10 W/m, and then maintain stable power output in the dark for various weather and body moving conditions, including bending, twisting, hand-stretching, wind blowing, and water washing. Our approaches not only simplified the fabrication of integrated fabric-type energy devices but also improved the structural and functional design flexibility of a portable electronic power source, especially for summer wearing applications.

摘要

为了提供一种轻巧透气的自充电可穿戴电源,使其能够适应各种天气条件和身体运动,我们提出了一种将刺绣技术作为一种工业上可扩展的电极到器件组装策略,而不是一种装饰性的纺织品图案制作过程。各种类型的电缆电极和具有不同大小和形状的器件单元可以直接且可靠地组装在轻巧柔软的薄纱上,形成光伏或电池器件,然后可以根据任何不规则的图案和任何电气连接设计进行进一步集成。在阳光下,作为手套或围巾的透明薄纱可以以 10 W/m 的功率进行充电,然后在黑暗中可以在各种天气和身体运动条件下保持稳定的功率输出,包括弯曲、扭曲、手拉伸、风吹和水洗。我们的方法不仅简化了集成织物型能源器件的制造,而且提高了便携式电子电源的结构和功能设计灵活性,特别是对于夏季穿着应用。

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