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Surface-functionalized silver nanowires on chitosan biopolymers for highly robust and stretchable transparent conducting films

机译:在壳聚糖生物聚合物上表面官能化的银纳米线,用于高稳健和可伸缩的透明导电膜

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摘要

We develop highly robust and stretchable conductive transparent electrodes based on silver nanowires (AgNWs) deposited on functionalized chitosan biopolymer substrates. 11-aminounde-canoic acid is introduced as a surface modifier for enhancing the chemical bond. The chemically functionalized AgNW films achieve a low sheet resistance of 12.2 ohm/sq with a high transmittance of 88.9%. In addition, stretchable alternating current-driven electroluminescent devices and stretchable transparent heaters have been fabricated with AgNW/chitosan thin-films which can be cut, stretched, bent, and twisted without performance degradation. With this approach, stretchable electronics prepared on bio-compatible substrates can be easily applied to curved surfaces or human skins.
机译:我们基于沉积在官能化​​的壳聚糖生物聚合物衬底上的银纳米线(AgNW)开发高稳健和可伸缩的导电透明电极。引入11-氨基甘露甲酸作为增强化学键的表面改性剂。化学官能化的AgNW膜达到12.2欧姆/平方英尺的低薄层电阻,高透射率为88.9%。另外,可伸缩的交流驱动的电致发光器件和可伸缩的透明加热器已经用Agnw /壳聚糖薄膜制造,可切割,拉伸,弯曲和扭曲而无需性能降解。通过这种方法,可以容易地施加在生物相容的基板上制备的可拉伸电子器件或者弯曲表面或人皮。

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