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    • 2. 发明申请
    • BISTABLE DISPLAY MATERIALS AND METHODS AND DEVICES THEREOF
    • 双重显示材料及其方法及其设备
    • US20100321626A1
    • 2010-12-23
    • US12562391
    • 2009-09-18
    • Pao-Ju HsiehHui-Lung Kuo
    • Pao-Ju HsiehHui-Lung Kuo
    • C09K19/02
    • C09K19/52
    • A display material and method and device thereof are provided. The display material is first formed by evenly mixing appropriate weight ratios of DFLCs, incurable nanoparticles, curable nanoparticles, and a photoinitiator. Next, the evenly mixed mixture is disposed between two parallel conducting transparent substrates, wherein an electrical field is conducted thereto and the DFLCs therein aligned to the direction of the applied electrical field. Concurrently, under the applied electrical field, some curable nanoparticles within the evenly mixed mixture, form short nano chains, initiating the photo initiator. The frame structure of short nano chains stabilize both the clear and scattering states, thereby the bistable characteristic was improved and the contrast ratio was enhanced as applied to bistable displays.
    • 提供了显示材料及其方法和装置。 显示材料首先通过均匀混合适当重量比的DFLC,不可消耗的纳米颗粒,可固化纳米颗粒和光引发剂来形成。 接下来,将均匀混合的混合物设置在两个平行的导电透明基板之间,其中对其进行电场并且其中的DFLC与所施加的电场的方向对齐。 同时,在施加的电场下,在均匀混合的混合物中的一些可固化纳米颗粒形成短的纳米链,引发光引发剂。 短纳米链的框架结构稳定了清晰和散射状态,从而双稳态特性得到改善,对比度提高了,适用于双稳态显示器。
    • 4. 发明授权
    • Method for broadening bandwidth of cholesteric liquid crystal
    • 胆甾型液晶带宽扩大的方法
    • US06669999B2
    • 2003-12-30
    • US09871397
    • 2001-05-30
    • Pao-Ju HsiehHui-Lung Kuo
    • Pao-Ju HsiehHui-Lung Kuo
    • C09K1900
    • C09K19/38C09K19/3068C09K2019/0448G02B5/3016Y10T428/1036
    • A method for making broadband cholesteric liquid crystals with improved bandwidth. The method includes the main steps of: (a) preparing a polymerization mixture containing first and second chiral liquid crystals, wherein the first chiral liquid crystal possesses a cholesteric liquid crystal phase and the second chiral liquid crystal possesses a helix-inversion characteristic, and at least one of the first or second chiral liquid crystals contains a polymerizable functional group; and (b) subjecting the polymerization mixture to a polymerization reaction, wherein the polymerization reaction is conducted such that the first chiral liquid crystal will go through a helix-inversion phenomenon. In a preferred embodiment, the second chiral liquid crystal has a temperature-dependent helicity which exhibits a helix inversion characteristic at a helix inversion temperature.
    • 制造带宽提高的宽带胆甾型液晶的方法。 该方法包括以下主要步骤:(a)制备含有第一和第二手性液晶的聚合混合物,其中第一手性液晶具有胆甾型液晶相,第二手性液晶具有螺旋反转特性, 第一或第二手性液晶中的至少一个含有可聚合官能团; 和(b)使聚合混合物进行聚合反应,其中进行聚合反应,使得第一手性液晶将经历螺旋反转现象。 在优选的实施方案中,第二手性液晶具有在螺旋反转温度下呈现螺旋反转特性的温度依赖性螺旋度。
    • 9. 发明授权
    • Bistable display materials and methods and devices thereof
    • 双稳态显示材料及其方法和装置
    • US08107050B2
    • 2012-01-31
    • US12562391
    • 2009-09-18
    • Pao-Ju HsiehHui-Lung Kuo
    • Pao-Ju HsiehHui-Lung Kuo
    • C09K19/02C09K19/34
    • C09K19/52
    • A display material and method and device thereof are provided. The display material is first formed by evenly mixing appropriate weight ratios of DFLCs, incurable nanoparticles, curable nanoparticles, and a photoinitiator. Next, the evenly mixed mixture is disposed between two parallel conducting transparent substrates, wherein an electrical field is conducted thereto and the DFLCs therein aligned to the direction of the applied electrical field. Concurrently, under the applied electrical field, some curable nanoparticles within the evenly mixed mixture, form short nano chains, initiating the photo initiator. The frame structure of short nano chains stabilize both the clear and scattering states, thereby the bistable characteristic was improved and the contrast ratio was enhanced as applied to bistable displays.
    • 提供了显示材料及其方法和装置。 显示材料首先通过均匀混合适当重量比的DFLC,不可消耗的纳米颗粒,可固化纳米颗粒和光引发剂来形成。 接下来,将均匀混合的混合物设置在两个平行的导电透明基板之间,其中对其进行电场并且其中的DFLC与所施加的电场的方向对齐。 同时,在施加的电场下,在均匀混合的混合物中的一些可固化纳米颗粒形成短的纳米链,引发光引发剂。 短纳米链的框架结构稳定了清晰和散射状态,从而双稳态特性得到改善,对比度提高了,适用于双稳态显示器。
    • 10. 发明授权
    • High transmittance brightness enhanced optical element for LCD by wholly coating process
    • 透光度高的亮度增强了液晶显示器的光学元件
    • US08023080B2
    • 2011-09-20
    • US12498355
    • 2009-07-06
    • Hui-Lung KuoPing-Chen ChenYi-Ping HsiehPao-Ju HsiehYu-Hsun Wu
    • Hui-Lung KuoPing-Chen ChenYi-Ping HsiehPao-Ju HsiehYu-Hsun Wu
    • G02F1/1335
    • G02B5/3083G02B5/3016G02F1/133528G02F1/13362G02F2001/133543
    • A high transmittance brightness enhanced optical element for backlight modules and liquid crystal display device is disclosed. The brightness enhanced polarizing optical element comprises a reflective polarizer film, a phase retardation film, and a polarization enhancement film. The reflective polarizer film provides a function of selectively reflecting right-handness circularly polarized light or left-handness circularly polarized light and will transmit the other one of them. The one was selectively reflected will be recombined with the light source or the backlight and re-direct toward the reflective polarizer. The portions of the reflective light will be recombined with the fresh light from the light source as above and the processes repeatedly. As a result, almost all of the light transmit the reflective polarizer and in the same circular polarization. The light is then transmitted the phase retardation film and converted to a polarized light with another optical axis.
    • 公开了用于背光模块和液晶显示装置的高透光率亮度增强型光学元件。 亮度增强偏振光学元件包括反射偏振膜,相位延迟膜和偏振增强膜。 反射偏振膜提供选择性地反射右手圆偏振光或左手圆偏振光的功能,并且将透射另一个。 选择性地反射的光将与光源或背光重新组合并重新指向反射型偏振器。 如上所述,反射光的部分将与来自光源的新鲜光重新组合,并重复处理。 结果,几乎所有的光透射反射偏振器并且以相同的圆偏振。 然后将光传输相位延迟膜,并用另一个光轴转换成偏振光。