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Roll-to-roll fabrication of touch-responsive cellulose photonic laminates

机译:卷对卷式触摸感应纤维素光子层压板

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摘要

Hydroxypropyl-cellulose (HPC), a derivative of naturally abundant cellulose, can self-assemble into helical nanostructures that lead to striking colouration from Bragg reflections. The helical periodicity is very sensitive to pressure, rendering HPC a responsive photonic material. Recent advances in elucidating these HPC mechano-chromic properties have so-far delivered few real-world applications, which require both up-scaling fabrication and digital translation of their colour changes. Here we present roll-to-roll manufactured metre-scale HPC laminates using continuous coating and encapsulation. We quantify the pressure response of the encapsulated HPC using optical analyses of the pressure-induced hue change as perceived by the human eye and digital imaging. Finally, we show the ability to capture real-time pressure distributions and temporal evolution of a human foot-print on our HPC laminates. This is the first demonstration of a large area and cost-effective method for fabricating HPC stimuli-responsive photonic films, which can generate pressure maps that can be read out with standard cameras.
机译:羟丙基纤维素(HPC)是自然丰富的纤维素的衍生物,可以自组装成螺旋纳米结构,从而导致布拉格反射产生显着的着色。螺旋周期对压力非常敏感,使HPC成为响应性光子材料。迄今为止,在阐明这些HPC机械变色特性方面的最新进展迄今已交付了很少的实际应用,这些应用既需要扩大规模的制造,也需要对其颜色变化进行数字转换。在这里,我们介绍了使用连续涂层和封装的卷对卷制造的米级HPC层压板。我们使用人眼和数字成像感知到的压力引起的色相变化的光学分析来量化封装的HPC的压力响应。最后,我们展示了在HPC层压板上捕获人类脚印的实时压力分布和时间演变的能力。这是首次大面积,高成本效益的制造HPC刺激响应光子膜方法的演示,该方法可以生成压力图,可以用标准相机读取。

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