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Extremely Stretchable Electrode based on Combination of InkJet-Printed Silver and Conductive Composite for Stretchable Lighting Applications

机译:基于喷墨印刷银和导电复合材料的可伸缩电极,用于可伸缩照明应用

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We have studied stretchable electrode based on combination of inkjet-printed silver electrode and conductive composite materials for stretchable lighting device application. We combined conductive composite materials with inkjet-printed metal thin film for high conductivity for both low and high elongation conditions. Our approach has advantages of simple patterning capability, high intial conductivity, and compensated low resistance sustaining under tremendously high tensile strain conditions when compared with previously reported methods. Our stretchable electrodes showed high condudctivity from the inkjet-printed silver electrode and maintained similar level of conductivity when they are elongated over 100%.
机译:我们已经研究了基于喷墨印刷银电极和导电复合材料的可拉伸电极,用于可拉伸照明设备。我们将导电复合材料与喷墨印刷的金属薄膜相结合,以在低和高伸长率条件下实现高导电性。与以前报道的方法相比,我们的方法具有简单的图案形成能力,高的初始电导率以及补偿了在极高的拉伸应变条件下维持的低电阻的优点。我们的可拉伸电极显示出比喷墨印刷银电极更高的导电性,并且当其伸长率超过100%时仍保持相似的电导率。

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