Abstract:
A method of forming a liquid crystal alignment layer includes the following steps. A substrate is provided. A base layer is then formed on the substrate. A first liquid crystal alignment layer is formed on the base layer. The first liquid crystal alignment layer includes a plurality of first organic molecules. Each of the first organic molecules includes a first carboxyl group part and a first alkyl group part. A display panel includes the substrate, a counter substrate, a liquid crystal layer, and the first liquid crystal alignment layer. The substrate is disposed opposite to the counter substrate. The liquid crystal layer is disposed between the substrate and the counter substrate. The first liquid crystal alignment layer is disposed between the liquid crystal layer and the substrate.
Abstract:
A polymer dispersed liquid crystal composition for lowering driving voltage of a polymer dispersed liquid crystal display device includes a polymer material, a plurality of liquid crystal molecules, and a plurality of non-conducting particles. The liquid crystal molecules are dispersed in the polymer material, and the liquid crystal molecules are disposed in a plurality of liquid crystal encapsulators formed by the polymer material. The non-conducting particles are dispersed in the polymer material.
Abstract:
A touch display device includes a display panel, a touch panel, and a non-self-luminescent display panel. The display panel includes at least one luminescent unit for generating a display image. The touch panel is disposed correspondingly to the display panel. The non-self-luminescent display panel is disposed between the touch panel and the display panel. The non-self-luminescent display panel includes a display medium layer for generating a non-self-luminescent display image or for being transparent to let the display image from the display panel pass through the display medium layer.
Abstract:
A liquid crystal display device includes a first substrate, a second substrate, a first electrode, a second electrode, a plurality of transmittance controlling units, and a plurality of liquid crystal pixel units. The first substrate and the second substrate are disposed oppositely to each other. The first electrode is disposed on the first substrate, and the second electrode is disposed on the second substrate. Each of the transmittance controlling units is disposed between the first electrode and the second electrode. At least two of the transmittance controlling units have different light transmittances. Each of the liquid crystal pixel units is disposed correspondingly to one of the transmittance controlling units. The liquid crystal pixel units corresponding to the transmittance controlling units with different light transmittances are employed to reflect light within different wavelength ranges.