Ji Zhichao, Zhang Xinzheng, Shi Bin, Li Wei, Luo Weiwei, Drevensek-Olenik Irena, Wu Qiang, Xu Jingjun
Opt Lett. 2016 Jan 15;41(2):336-9. doi: 10.1364/OL.41.000336.
We report on the liquid crystal (LC) alignment induced by sparse polymer ribbons fabricated by the two-photon polymerization-based direct laser writing method. Each ribbon is fabricated by a single scan of the laser through the photoresist and possesses surface relief gratings on both sides. The relief gratings are caused by the optical interference between the incident and reflected laser beams. With the aid of these relief gratings, LC molecules can be well aligned along the selected direction of the ribbons. LC cells with the Z-shaped and checkerboard-type microstructures are constructed based on the sparse out-of-plane polymeric ribbons. Our results show that with such polymer ribbons a compartmentalized LC alignment in the arbitrary microstructures can be realized.
我们报道了基于双光子聚合的直接激光写入方法制备的稀疏聚合物带诱导的液晶(LC)取向。每条带通过激光单次扫描光刻胶制成,两侧均具有表面起伏光栅。这些起伏光栅是由入射激光束和反射激光束之间的光学干涉引起的。借助这些起伏光栅,液晶分子可以沿带的选定方向良好取向。基于稀疏的面外聚合物带构建了具有Z形和棋盘型微结构的液晶盒。我们的结果表明,使用这种聚合物带可以在任意微结构中实现分区液晶取向。