首页> 外文会议>Symposium on Liquid Crystal Materials and Devices, held April 5-7, 1999, San Francisco, California, U.S.A. >Oriented polymer/metal nanocomposites: a new method for the production of polarization dependent color filters
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Oriented polymer/metal nanocomposites: a new method for the production of polarization dependent color filters

机译:定向的聚合物/金属纳米复合材料:一种生产偏振相关滤色片的新方法

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Uniaxially oriented composites of high-density polyethylene and silver nanoparticles were prepared using solution-casing, melt-extrusion and solid-state drawing techniques. The absorption spectrum in the visible wavelength range of the drawn nanocomposites was observed to strongly depend on the polarization direction of the incident light. For instance, the nanocomposites appear bright yellow or red when the vibration direction of linearly polarized light is perpendicular or parallel, respectively, to the drawing axis. The optical anisotropy of the drawn nanocomposities originates from uniaxially oriented, pearl-necklace type of arrays of nanoparticles of high aspect ratios. THe absorption spectrum of the nanocomposites can be shifted to higher wavelengths using appropriate annealing procedures. The annealing results in an increased size of the primary silver particles, due to Ostwald ripening, and consequently a range of polarization-dependent colors can be generated in the drawn nanocomposities. It is suggested that the drawn nanocomposite films can be used in liquid crystal displays (LCD's) were they serve a dual purpose in combining polarization filter and color filter. The new display configuration transmits colored light in both the on- and off-state of the device, this in contrast to a conventional color LCD which only transmits colored light in the off-state. As a consequence, an enhanced brightness and light (energy) efficiency of the new display set-up is envisioned.
机译:使用溶液套管,熔融挤出和固态拉伸技术制备了高密度聚乙烯和银纳米粒子的单轴取向复合材料。观察到在拉制的纳米复合材料的可见波长范围内的吸收光谱强烈取决于入射光的偏振方向。例如,当线性偏振光的振动方向分别垂直于或平行于绘制轴时,纳米复合材料呈现亮黄色或红色。拉伸的纳米复合材料的光学各向异性源于高纵横比的纳米颗粒阵列的单轴取向,珍珠项链类型。纳米复合材料的吸收光谱可以使用适当的退火程序转移到更高的波长。由于奥斯特瓦尔德熟化,退火导致初级银颗粒的尺寸增加,因此在拉伸的纳米复合材料中会产生一系列偏振相关的颜色。建议将拉伸的纳米复合膜用于液晶显示器(LCD),因为它们在偏振滤光片和彩色滤光片的组合中具有双重用途。新的显示配置在设备的开启和关闭状态下均透射彩色光,这与仅在关闭状态下透射彩色光的常规彩色LCD形成对比。结果,设想了新的显示装置的增强的亮度和光(能量)效率。

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