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Printing Stretchable Spiral Interconnects Using Reactive Ink Chemistries

机译:使用反应性油墨化学技术打印可拉伸螺旋互连

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摘要

Stretchable electronics have important applications in health monitoring and integrated lab-on-a-chip devices. This paper discusses the performance of serpentine stretchable interconnects printed using self reducing, silver reactive inks. It details process optimization, device fabrication, and device characterization, while demonstrating the potential applications for reactive inks and new design strategies in stretchable electronics. Devices were printed with an ethanol stabilized silver diamine reactive ink and cycled to stretch ratios of 140 and 160% over 1000 cycles with less than 2.5% variation in electrical resistance. Maximum deformation before failure was measured at 180% elongation. Additionally, interconnect deformation was compared to finite element analysis (FEA) simulations to show that FEA can be used to accurately model the deformation of low-strain printed interconnects. Overall, this paper demonstrates a simple and affordable route toward stretchable electrical interconnects.
机译:可伸缩电子产品在健康监测和集成芯片实验室设备中具有重要的应用。本文讨论了使用自还原银反应性油墨印刷的蛇形可拉伸互连的性能。它详细介绍了工艺优化,设备制造和设备特性,同时演示了可反应性墨水在可伸缩电子产品中的潜在应用和新设计策略。用乙醇稳定的银二胺反应性油墨印刷器件,并在1000次循环中将拉伸比循环至140和160%,电阻变化小于2.5%。断裂前的最大变形在180%伸长率下测得。此外,将互连变形与有限元分析(FEA)模拟进行了比较,以表明FEA可用于精确建模低应变印刷互连的变形。总体而言,本文展示了一种简单且价格合理的方法来实现可伸缩的电气互连。

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