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Electromechanical Response of Dip-Coated Silver Films on Micro-Bumpy Polymer Surface

机译:微凸块聚合物表面浸涂银膜的机电响应

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摘要

Mechanical performance of nanoparticle-based thin films depends on the method of fabrication and the properties of the underlying substrate. This study presents experimental results of electromechanical response of micrometer-thick dip-coated silver nanoparticle-based films on rough and highly compliant (Young's modulus between 120 and 130 kPa) polydimethylsiloxane substrate having random micro-bumpy surface. The experimental results demonstrate stretchability of 13% and flexibility of 3.43% for the as-fabricated metal-polymer laminate. The entire process being amenable to mass production suggests a cost-effective and high-throughput route toward the fabrication of stretchable/flexible electronic devices and thin film sensors.
机译:纳米粒子基薄膜的机械性能取决于制造方法和底层基材的性能。这项研究提出了微米厚度的浸涂银纳米颗粒基薄膜在粗糙且高度柔顺(杨氏模量在120到130 kPa之间)的聚二甲基硅氧烷基底上的机电响应的实验结果,该基底具有随机的微凹凸表面。实验结果表明,所制造的金属-聚合物层压板的可拉伸性为13%,柔韧性为3.43%。适于大规模生产的整个过程表明,制造可拉伸/柔性电子设备和薄膜传感器的成本效益高且通量高的路线。

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