首页> 外文会议>Conference on Emerging Liquid Crystal Technologies; 20080120-22; San Jose,CA(US) >3D-structured liquid crystal networks formed by dichroic photoinitiator initiated photopolymerization
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3D-structured liquid crystal networks formed by dichroic photoinitiator initiated photopolymerization

机译:由二色性光引发剂形成的3D结构液晶网络引发了光聚合

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Photopolymerization of liquid crystal monomers initiated by means of a dichroic photoinitiator provides an additional degree of freedom in controlling the morphology and structure of the liquid crystal networks formed. The absorption of the dichroic photoinitiator, and thereby its initiation rate, depends on its position towards the transversal light beam used for polymerization as well as its position towards the polarization of the light beam. The photoinitiator adapts the director profile of the liquid crystal monomer. As a result planar oriented areas aligned orthogonal to the propagation direction of the light beam polymerize faster than the ones parallel to it. Similarly, planar aligned areas with their orientation parallel to the electrical field vector of the light polymerize faster than the planar aligned areas oriented perpendicular to that. Based on this principle complex lithographic structures are built, not only forming structures in the plane of the polymerizing film but also in the third dimension along its cross-section. Additionally, applying the dichroic photoinitiator together with the principle of polymerization induced diffusion in monomer blends provides a wealth of new structures, especially when combined further with complicated, but well-controlled, morphologies such as those of twisted, splayed and cholesteric liquid crystal monomers.
机译:借助于二色性光引发剂引发的液晶单体的光聚合在控制形成的液晶网络的形态和结构方面提供了额外的自由度。二向色性光引发剂的吸收以及由此的引发速率取决于其朝向用于聚合的横向光束的位置以及其朝向光束的偏振的位置。光引发剂适应液晶单体的指向矢分布。结果,垂直于光束的传播方向排列的平面取向区域比平行于光束的传播方向更快地聚合。类似地,取向平行于光的电场矢量的平面取向区域比垂直于光电场矢量取向的平面取向区域聚合更快。基于该原理,建立了复杂的光刻结构,不仅在聚合膜的平面中而且在沿其横截面的第三维中形成结构。另外,将二色性光引发剂与聚合反应引起的扩散原理一起应用于单体共混物中可提供大量新结构,尤其是当与复杂但控制良好的形态(如扭曲,张开和胆甾醇型液晶单体)进一步组合时。

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