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Buckling assisted and lithographically micropatterned fully flexible sensors for conformal integration applications

机译:屈曲辅助和光刻微图案化全柔性传感器用于共形集成应用

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摘要

Development of flexible sensors/electronics over substrates thicker than 100 μm is of immense importance for its practical feasibility. However, unlike over ultrathin films, large bending stress hinders its flexibility. Here we have employed a novel technique of fabricating sensors over a non-planar ridge topology under pre-stretched condition which not only helps in spontaneous generation of large and uniform parallel buckles upon release, but also acts as stress reduction zones thereby preventing Poisson’s ratio induced lateral cracking. Further, we propose a complete lithography compatible process to realize flexible sensors over pre-stretched substrates thicker than 100 μm that are released through dissolution of a water soluble sacrificial layer of polyvinyl alcohol. These buckling assisted flexible sensors demonstrated superior performance along different flexible modalities. Based on the above concept, we also realized a micro thermal flow sensor, conformally wrapped around angiographic catheters to detect flow abnormalities for potential applications in interventional catheterization process.
机译:由于其实际可行性,在厚度大于100μm的基板上开发柔性传感器/电子产品具有极其重要的意义。但是,与超薄膜不同,较大的弯曲应力会阻碍其柔韧性。在这里,我们采用了一种在预拉伸条件下在非平面脊形拓扑上制造传感器的新颖技术,该技术不仅有助于释放时自发产生大而均匀的平行弯折,而且还可以作为应力减小区域,从而防止泊松比引起横向开裂。此外,我们提出了一种完整的光刻兼容工艺,以在厚度大于100μm的预拉伸基板上实现柔性传感器,该传感器通过溶解聚乙烯醇的水溶性牺牲层而释放。这些屈曲辅助的柔性传感器在不同的柔性模式下表现出卓越的性能。基于以上概念,我们还实现了一种微型热流传感器,该传感器以保形方式包裹在血管造影导管周围,以检测流量异常,从而在介入性导管插入过程中潜在应用。

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