首页> 外文会议>Symposium on Flat-Panel Displays and Sensors-Principles, Materials and Processes held April 4-9, 1999, San Francisco, California, U.S.A. >Supramolecular assembly strategies using alternate adorption of polyelectrolytes: applications in pled and LC display devices
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Supramolecular assembly strategies using alternate adorption of polyelectrolytes: applications in pled and LC display devices

机译:使用交替修饰的聚电解质的超分子组装策略:在普通和液晶显示器中的应用

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摘要

We present work on the modification, processing, and analysis of ultrathin films for display devices primarily using the supramolecular assembly strategy. This involves the us of various molecular assembly techniques (ortganic, polymer, metal) in which layer order and functionality is acieved at defined lenth scales approaching that of ultathin films (a few to several hundred nm thicknesses). The use of alternate polyelectrolyte deposition (APD) is primarily investigated in ultrathin films that have significance in the fabrication of display devices. The sirst application involves modifying a polymer hight emitting diode (PLED) device fabricated using the ITO/MEH-PPV/Ca protocol with polyaniline derivatives. The second is the used of the "command layer" amplification concept and photo-induced alignment using plarized light with ultrathin films of azo dye/polyelectrlytes in a hybrid liquid crystal (LC) cell configuration,. Both strategies rely on the use of surface sensitive spectroscopic and microscopic techniques to correlate device performance with layer ordering at the molecular level. The concept of functional ultrathin layers for device fabrication and modification is emphasized.
机译:我们目前主要使用超分子组装策略对用于显示设备的超薄膜进行修饰,处理和分析。这涉及到各种分子组装技术(有机,聚合物,金属),在这些技术中,层级和功能性在确定的长度尺度上达到,该长度接近于超薄膜的厚度(几至几百纳米)。交替聚电解质沉积(APD)的使用主要是在超薄膜中进行的,该薄膜对显示设备的制造具有重要意义。最早的应用涉及使用聚苯胺衍生物修饰使用ITO / MEH-PPV / Ca协议制造的聚合物高发射二极管(PLED)器件。第二个是在混合液晶(LC)单元配置中使用“命令层”放大概念和使用偏光和偶氮染料/聚电解质超薄膜的光致对准。两种策略都依赖于使用表面敏感的光谱学和显微技术来使器件性能与分子水平的层序相关。强调了用于器件制造和修改的功能性超薄层的概念。

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