Abstract:
An organic device including a substrate or a dielectric layer; a photoresist layer formed on the substrate or dielectric layer, wherein the photoresist layer is provided with a plurality of microgrooves having an alignment direction; an organic semiconducting layer having alignment formed on the photoresist layer, wherein the organic semiconducting layer aligns according to the alignment direction of the microgrooves of the photoresist layer; and an electrode.
Abstract:
A diffusion reflector having a TiO2 layer and a process for manufacturing the same are proposed. The TiO2 layer is disposed on a diffusion reflector by coating, electroplating or plasma enhanced chemical vapor deposition process. The directional dependency of the reflector on external luminosity is reduced and the resulting appearance of the reflector looks like the appearance of white paper.
Abstract translation:提出了具有TiO 2层的扩散反射体及其制造方法。 TiO 2层通过涂覆,电镀或等离子体增强化学气相沉积工艺设置在扩散反射器上。 反射器对外部亮度的方向依赖性降低,并且反射器的外观看起来像白皮书的外观。
Abstract:
A method for manufacturing the liquid crystal display, which mainly use a auxiliary substrate with polymeric material containing liquid crystal to proceed a photo polymerization process, and then use a first polymeric material layer to proceed a process with plurality electrode, alignment layer and flanges setting in. A second polymeric material mixture coating on a substrate which has plurality electrode pattern an alignment layer and flanges on it. And then align the auxiliary substrate and the substrate to proceed exposure process and combine both due to phase separation, finally removing the assist substrate.
Abstract:
The present invention discloses a method for manufacturing an electrophoretic display. The major feature is wrapping the colored and charged particles with photo polymeric material so as to enable an electrophoretic display. The manufacturing process includes steps as proceeding to a polymerization manufacturing process where an assist substrate having a buffer layer is coated with a first layer of photo polymeric material. The first layer of photo polymeric material then undergoes required steps such as conductive layer electrode fabricating. The second layer of photo polymeric material mixture is coated on a substrate having a plurality of electrode patterns. The assist substrate is aligned with the substrate. Then a mask exposure polymerization manufacturing process is performed so as to combining the assist substrate and the substrate and separate the charged particles solution from the polymeric material. The assist substrate is removed from the substrate and the manufacturing process is completed.
Abstract:
An organic device including a substrate or a dielectric layer; a photoresist layer formed on the substrate or dielectric layer, wherein the photoresist layer is provided with a plurality of microgrooves having an alignment direction; an organic semiconducting layer having alignment formed on the photoresist layer, wherein the organic semiconducting layer aligns according to the alignment direction of the microgrooves of the photoresist layer; and an electrode.
Abstract:
A plastic liquid crystal display device and a fabrication method thereof. A plastic substrate having a plurality of bumps on at least one surface thereof is integrally molded. A glass transition temperature (Tg) of the plastic substrate is greater than 150null C. A melt flow index (MFI) of the plastic substrate is greater than 2. A conformal reflective film on the plastic substrate with the bumps is formed. An insulating substrate opposite the plastic plate is provided. A transparent electrode is formed on an inner surface of the insulating substrate. A liquid crystal layer is inserted between the plastic substrate and the insulating substrate.