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Stretchable Conductive Composites from Cu-Ag Nanowire Felt

机译:来自Cu-Ag纳米线感觉的可拉伸导电复合材料

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摘要

Materials that retain a high conductivity under strain are essential for wearable electronics. This article describes a conductive, stretchable composite consisting of a Cu-Ag core-shell nanowire felt infiltrated with a silicone elastomer. This composite exhibits a retention of conductivity under strain that is superior to any composite with a conductivity greater than 1000 S cm'. This work also shows how the mechanical properties, conductivity, and deformation mechanism of the composite changes as a function of the stiffness of the silicone matrix. The retention of conductivity under strain was found to decrease as the Young's modulus of the matrix increased. This was attributed to void formation as a result of debonding between the nanowire felt and the elastomer. The nanowire composite was also patterned to create serpentine circuits with a stretchability of 300%.
机译:在应变下保持高导电性的材料对于可穿戴电子产品至关重要。 本文介绍了由用硅氧烷弹性体浸润的Cu-Ag核 - 壳纳米线组成的导电伸展复合材料。 该复合材料表现出在应变下的导电性的保留,其优于任何具有大于1000厘米的电导率的复合物。 这项工作还示出了复合材料的机械性能,电导率和变形机理如何随硅氧烷基质刚度的函数而变化。 随着基质的杨氏模量增加,发现菌株下的导电性的保留降低。 由于纳米线毛毡和弹性体之间的剥离,这归因于空隙形成。 还图案化纳米线复合材料以产生蛇形电路,其拉伸性为300%。

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