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Effect of UV curing conditions on polymerized tunable chiral nematic liquid crystals

机译:紫外线固化条件对聚合可调手性向列液晶的影响

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Chiral nematic liquid crystals have attracted substantial interest. They spontaneously self-organize to form a helical structure with no complex fabrication procedure required and exhibit a reflection band for a certain wavelength interval. Since the photonic band gap can be tuned by applying external factors (heat, voltage, light, elasticity) chiral nematic liquid crystals are potentially interesting for large area optical filters and shutters, reflective displays and tunable lasers. In this work, a device which consists of a mixture of photo-polymerizable liquid crystal, non-reactive nematic liquid crystal and a chiral dopant is fabricated. By selecting the appropriate chiral dopant concentration, it is possible to make devices for different operation wavelengths. The influence of UV illumination on a partially polymerized chiral liquid crystal is investigated. A blue-wavelength shift of the photonic band gap is obtained as a function of power, duration time of UV illumination and the thickness of the cells. Interestingly the width and depth of the photonic band gap is unaffected by the change in UV curing conditions, which indicates that there is no degradation by the UV light.
机译:手性向列型液晶引起了人们的极大兴趣。它们自发地自组织以形成螺旋结构,而无需复杂的制造程序,并且在一定的波长间隔内显示出反射带。由于可以通过施加外部因素(热,电压,光,弹性)来调节光子带隙,因此,手性向列液晶对于大面积滤光器和百叶窗,反射型显示器和可调激光器而言可能是令人感兴趣的。在这项工作中,制造了一种由光聚合液晶,非反应性向列液晶和手性掺杂剂的混合物组成的装置。通过选择适当的手性掺杂剂浓度,可以制造用于不同工作波长的器件。研究了紫外线照射对部分聚合的手性液晶的影响。获得光子带隙的蓝光波长偏移,该偏移是功率,UV照射的持续时间和单元厚度的函数。有趣的是,光子带隙的宽度和深度不受紫外线固化条件变化的影响,这表明紫外线不会导致光降解。

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