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A Self-Assembled, Low-Cost, Microstructured Layer for Extremely Stretchable Gold Films

机译:用于极易拉伸金膜的自组装,低成本,微结构层

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We demonstrate a simple, low-cost, and green approach to deposit a microstructured coating on the silicone elastomer polydimethylsiloxane (PDMS) that can be coated with gold to produce highly stretchable and conductive films. The microstructured coating is fabricated using an aqueous emulsion of poly(vinyl acetate) (PVAc): common, commercially available white glue. The aqueous glue emulsion self-assembles on the PDMS surface to generate clustered PVAc globules, which can be conformally coated with gold. The microstructured surface provides numerous defect sites that localize strain when the structure is stretched, resulting in the initiation of numerous microcracks. As the structure is further elongated, the microcracks interact with one another, preventing long-range crack propagation and thus preserving the conduction pathway. The resistance of PDMS/glue/gold structures remains remarkably low (23 times the initial resistance) up to 65% elongation, making these structure useful as stretchable interconnects. Decreasing the concentration of the PVAc aqueous emulsion reduces the density of defect sites of the microstructure, which increases the change in resistance of the gold films with stretching. In this way, we can tune the resistance changes of the PDMS/glue/gold structures and increase their sensitivity to strain. We demonstrate the use of these structures as wearable, soft strain sensors.
机译:我们展示了一种简单,低成本和绿色的方法,可以在有机硅弹性体聚二甲基硅氧烷(PDMS)上沉积微结构涂层,该涂层可以镀金以生产高拉伸性和导电性薄膜。该微结构涂层是使用聚醋酸乙烯酯(PVAc):一种常见的可商购的白胶水乳液制备的。水性胶乳在PDMS表面上自组装,生成聚簇的PVAc小球,可以用金进行保形涂覆。微结构的表面提供了许多缺陷部位,这些缺陷部位在拉伸结构时会局部应变,从而引发许多微裂纹。随着结构的进一步拉长,微裂纹彼此相互作用,防止了长距离裂纹的扩展,从而保留了传导路径。 PDMS /胶水/金结构的电阻仍然非常低(是初始电阻的23倍),延伸率高达65%,使这些结构可用作可拉伸的互连。降低PVAc水性乳液的浓度会降低微结构缺陷部位的密度,从而增加金膜在拉伸时的电阻变化。这样,我们可以调整PDMS /胶/金结构的电阻变化,并提高其对应变的敏感性。我们演示了将这些结构用作可穿戴的软应变传感器。

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