Ren Hongwen, Xu Su, Wu Shin-Tson
Department of Polymer Nano-Science and Technology, Chonbuk National University, Jeonju, Jeonbuk, South Korea.
Opt Express. 2012 Nov 19;20(24):26464-72. doi: 10.1364/OE.20.026464.
A simple approach for preparing gradient polymer network liquid crystal (PNLC) with a large refractive index change is demonstrated. To control the effective refractive index at a given cell position, we applied a voltage to a homogeneous cell containing LC/diacrylate monomer mixture to generate the desired tilt angle and then stabilize the LC orientation with UV-induced polymer network. By varying the applied voltage along with the cells' movement, a PNLC with a gradient refractive index distribution is obtained. In comparison with conventional approaches using patterned photomask or electrode, our method offers following advantages: large refractive index change, freedom to design specific index profile, and large panel capability. Potential applications include tunable-focus lenses, prism gratings, phase modulators, and other adaptive photonic devices.
展示了一种制备具有大折射率变化的梯度聚合物网络液晶(PNLC)的简单方法。为了在给定的盒位置控制有效折射率,我们向含有液晶/二丙烯酸酯单体混合物的均匀盒施加电压以产生所需的倾斜角,然后用紫外线诱导的聚合物网络稳定液晶取向。通过改变施加的电压以及盒的移动,获得了具有梯度折射率分布的PNLC。与使用图案化光掩模或电极的传统方法相比,我们的方法具有以下优点:大折射率变化、可自由设计特定的折射率分布以及大尺寸面板能力。潜在应用包括可调焦透镜、棱镜光栅、相位调制器和其他自适应光子器件。