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Patterned Metal/Polymer Composite Film with Good Mechanical Stability and Repeatability for Flexible Electronic Devices Using Nanoimprint Technology

机译:具有良好的机械稳定性和使用纳米视网膜技术的柔性电子器件的机械稳定性和可重复性的图案化金属/聚合物复合膜

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摘要

Mechanical stability and repeatability are significant factors for the application of metal film flexible electronic devices. In this work, patterned metal/polymer composite films with good mechanical stability and repeatability were fabricated through nanoimprint technology. The mechanical properties characteristic of metal/polymer composite films were exhibited by resistance change (ΔR/R0) after cyclic tension and bending loading. It was found that the ΔR/R0 and error line of patterned metal/polymer composite film was far lower than the other control groups for repeated experiments, which indicates that patterned metal film has excellent mechanical properties and repeatability. The double cantilever beam method was employed to measure the interfacial adhesion properties of composite films. The average interfacial adhesion of patterned metal/polymer composite films is shown to be over 2.9 and 2.2 times higher than that of metal film deposited on bare polymer and metal nanowire-treated polymer substrates, respectively.
机译:机械稳定性和可重复性是应用金属薄膜柔性电子器件的重要因素。在这项工作中,通过纳米压印技术制造具有良好机械稳定性和可重复性的图案化金属/聚合物复合膜。通过循环张力和弯曲载荷后通过电阻变化(ΔR/ R0)表现出金属/聚合物复合膜的机械性能。发现图案化金属/聚合物复合膜的ΔR/ R0和误差线远低于反复实验的其他对照组,这表明图案化的金属膜具有优异的机械性能和可重复性。使用双悬臂梁法测量复合膜的界面粘附性能。图案化金属/聚合物复合膜的平均界面粘附性分别比涂裸聚合物和金属纳米线处理的聚合物基材上的金属膜高出2.9和2.2倍。

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