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首页> 外文期刊>Journal of Micromechanics and Microengineering >Planar patterned stretchable electrode arrays based on flexible printed circuits
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Planar patterned stretchable electrode arrays based on flexible printed circuits

机译:基于柔性印刷电路的平面图案化可拉伸电极阵列

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摘要

For stretchable electronics to achieve broad industrial application, they must be reliable to manufacture and must perform robustly while undergoing large deformations. We present a new strategy for creating planar stretchable electronics and demonstrate one such device, a stretchable microelectrode array based on flex circuit technology. Stretchability is achieved through novel, rationally designed perforations that provide islands of low strain and continuous low-strain pathways for conductive traces. This approach enables the device to maintain constant electrical properties and planarity while undergoing applied strains up to 15%. Materials selection is not limited to polyimide composite devices and can potentially be implemented with either soft or hard substrates and can incorporate standard metals or new nano-engineered conductors. By using standard flex circuit technology, our planar microelectrode device achieved constant resistances for strains up to 20% with less than a 4% resistance offset over 120 000 cycles at 10% strain.
机译:为了使可拉伸电子产品实现广泛的工业应用,它们必须可靠制造,并且在经受大变形的同时必须具有强劲的性能。我们提出了一种创建平面可拉伸电子器件的新策略,并演示了一种这样的设备,一种基于柔性电路技术的可拉伸微电极阵列。可拉伸性是通过新颖,合理设计的穿孔实现的,该穿孔为导电迹线提供了低应变的岛和连续的低应变路径。这种方法使该器件在承受高达15%的施加应变的同时,能够保持恒定的电性能和平面度。材料选择不仅限于聚酰亚胺复合器件,而且可以潜在地用软或硬基板实现,并且可以包含标准金属或新的纳米工程导体。通过使用标准的柔性电路技术,我们的平面微电极器件在10%应变下的12万次循环中,对于高达20%的应变实现了恒定电阻,而在20万次循环中的电阻偏移小于4%。

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