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Synthesis of Stretchable Gold Films with Nanocracks: Stretched up to 120 Strain while Maintaining Conductivity

机译:用纳米裂纹合成可拉伸金膜:在保持导电性的同时拉伸高达120%的菌株

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With the great deformability of stretch, compression, bend and twisting, while preserving electrical property, metal films on elastomeric substrates have many applications for serving as bioelectrical interfaces. However, at present, most polymer-supported thin metal films reported rupture at small elongations (<10%). In this work, highly stretchable thin gold films were fabricated on PDMS substrates by a novel micro-processing technology. The as deposited films can be stretched by a maximum 120% strain while maintaining their electrical conductivity. Electrical characteristics of the gold films under single-cycle and multi-cycle stretch deformations are investigated in this work. SEM images imply that the gold films are under the structure of nanocracks. The mechanisms of the stretchability of the gold films can be explained by the nanocraks, which uniformly distribute with random orientation in the films.
机译:随着拉伸,压缩,弯曲和扭曲的巨大可变形性,同时保持电性能,弹性体基材上的金属膜具有许多用于用作生物电界面的应用。然而,目前,大多数聚合物负载的薄金属膜报告小伸长率(<10%)的破裂。在这项工作中,通过新颖的微处理技术在PDMS基板上制造了高度可拉伸的薄金薄膜。作为沉积膜可以通过最大120%的菌株拉伸,同时保持其电导率。在这项工作中研究了单周期和多循环拉伸变形下的金膜的电气特性。 SEM图像意味着金膜在纳米裂纹的结构下。金膜的拉伸性的机制可以通过薄膜均匀地分布在薄膜中的随机取向。

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