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STIMULI-RESPONSIVE POLYMER FILM OR COATING, RESPONSIVE DEVICE AND PROCESS FOR PREPARING THE SAME

机译:刺激响应性聚合物膜或涂层,响应性设备及其制备方法

摘要

The limitation of the different classes of responsive liquid crystals such as volatility in case of low molecular weight liquid crystals (LMWLCs) can be overcome by the development of a responsive film based on polymerliquid crystals (PLCs) and reactive mesogens (RMs or reactive liquid crystal monomers) to create a responsive film or coating material which appears to be easily alignable and processable. That coating material shows a large response of which the properties can be tuned in a modular approach. In this way, the advantages of both materials, PLCs and RMs, were combined, yielding stable films, which can be aligned when desired and which stimuli-responsive properties can be tuned by the choice of RMs. Thus mixtures of PLCs with RMs open the doors to a wide variety of stimuli-responsive coating systems, without the need of time consuming trial-and-error synthesis of PLCs and closed liquid crystal cells. By choosing chiral RMs, cholesteric LC coatings can for instance be fabricated, while a light responsive RM could provide a light responsive coating. In addition, one could use similar methods as were used for LMWLCs with RMs in closed cells to prepare for example broadband reflectors or patterned coatings that change topography by a stimulus.
机译:通过开发基于聚合物液晶(PLC)和反应性液晶元(RMs或反应性液晶)的响应膜,可以克服不同类型的响应液晶的局限性,例如在低分子量液晶(LMWLC)情况下的挥发性单体)以形成易于对准和加工的响应性薄膜或涂层材料。该涂层材料显示出很大的响应,可以通过模块化方法调整其性能。通过这种方式,将PLC和RM两种材料的优点结合在一起,得到了稳定的薄膜,可以在需要时将其对齐,并且可以通过选择RM来调节其刺激响应特性。因此,带有RM的PLC的混合物为各种刺激响应涂层系统打开了大门,而无需耗时的PLC和封闭式液晶单元的反复试验合成。通过选择手性RM,例如可以制造胆甾型LC涂层,而光敏RM可以提供光敏涂层。另外,可以使用与用于密闭单元中具有RM的LMWLC相似的方法来制备例如宽带反射器或通过刺激改变形貌的图案涂层。

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