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Elastic sheath-liquid crystal core fibres achieved by microfluidic wet spinning

机译:通过微流体湿纺器实现的弹性鞘液晶芯纤维

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摘要

While coaxial polymer sheath-liquid crystal core fibres attract interest for fundamental research as well as applied reasons, the main method for achieving them so far, electrospinning, is complex and has significant limitations. It has proven particularly challenging to spin fibres with an elastic sheath. As an alternative approach, we present a microfluidic wet spinning process that allows us to produce liquid crystal core-polyisoprene rubber sheath fibres on a laboratory scale. The fibres can be stretched by up to 300% with intact core-sheath geometry. We spin fibres with nematic as well as with cholesteric liquid crystal in the core, the latter turning the composite fibre into an elastic cylindrical photonic crystal. Iridescent colours are easily observable by the naked eye. As this coaxial wet spinning should be amenable to upscaling, this could allow large-scale production of innovative functional fibres, attractive through the various responsive characteristics of different liquid crystal phases being incorporated into an elastic textile fiber form factor.
机译:虽然同轴聚合物鞘液晶芯纤维吸引了对基本研究的兴趣以及所应用的原因,到目前为止实现它们的主要方法,静电纺丝是复杂的并且具有显着的限制。已经证明是纺丝用弹性护套的纤维挑战。作为一种替代方法,我们介绍了一种微流体湿纺丝工艺,其允许我们在实验室规模上生产液晶核 - 聚异戊二烯橡胶鞘纤维。通过完整的芯鞘几何形状,纤维可以拉伸高达300%。我们用甲型和胆甾型液晶在芯中旋转纤维,后者将复合纤维转换成弹性圆柱形光子晶体。赤裸眼睛很容易观察到彩虹色。由于这种同轴湿纺出均可升高,这可以允许大规模生产创新的功能纤维,通过掺入弹性纺织纤维形状因子中的不同液晶相的各种响应性特性具有吸引力。

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