Abstract:
An inorganic particle-containing composition comprising: (A) inorganic particles; (B) a binder resin; and (C) at least one plasticizer selected from the group consisting of compounds represented by the following formula (1): R1O—R2mOOC—(CH2nCOOR3—OmR4 (1) wherein R1 and R4are the same or different alkyl groups having 1 to 30 carbon atoms or alkenyl groups, R2 and R3 are the same or different alkylene groups having 1 to 30 carbon atoms or alkenylene groups, m is an integer of 0 to 5, and n is an integer of 1 to 10, and compounds represented by the following formula (2): wherein R5 is an alkyl group having 1 to 30 carbon atoms or alkenyl group. A transfer film and a plasma display panel production process using the composition are also described.
Abstract:
The present invention provides a plasma display panel (PDP) with a structure that can reduce an outer reflection of an external light source and increase the reflection of visible rays emitted from the phosphor, remarkably increase the aperture ratio of the front panel, and remarkably reduce occurrence of a permanent residual image. The PDP includes: a transparent front panel; a rear panel disposed in parallel with the front panel; a plurality of opaque upper barrier ribs disposed between the front panel and the rear panel to define a plurality of discharge cells, and formed of a dielectric material; a lower discharge electrode and an upper discharge electrode disposed within the plurality of opaque upper barrier ribs so as to enclose the discharge cells; a plurality of lower barrier ribs disposed between the plurality of opaque upper barrier ribs and the rear panel; a phosphor layer disposed within a space defined by the plurality of lower barrier ribs; and a discharge gas disposed inside the discharge cells.
Abstract:
An oxide composite particle of the present invention is composed of at least one fine gold particle contained in a matrix of an oxide particle or at least one fine gold particle supported fixedly on the surface of an oxide particle, and absorbs a visible light having a specific wavelength. A phosphor of the invention has a thin film which is composed of such oxide composite particles on the surface of a phosphor particle of red or the like. The phosphor can be obtained by mixing phosphor particles into a dispersion of gold colloid/oxide composite particles, agitating the resultant mixture, and taking out the precipitated phosphor particles, followed by drying. Further, in a color filter of the invention, a filter layer of at least one color formed on an inner surface of a panel is a thin film composed of the above-described oxide composite particles. This provides a phosphor or color filter which is excellent in optical characteristics, heat resistance and non-toxicity and never interferes with the irradiation of a photoresist with ultraviolet rays, and realizes a color display which exhibits good luminous chromaticity and is excellent in brightness and contrast.
Abstract:
A display panel includes a resin lens layer. The display panel consists of a front panel 10 and a back panel 12 which are hermetically sealed together. The display panel also includes a plurality of display cells and is filled with a gas. A visible-light transparent resin is coated over the front surface of the front panel 10. The resin layer is raise-molded with a molding tool 16 while being solidified. Through this molding process, a resin lens layer 14 with plural lenses is formed on the front surface of the front panel 10. The resin lens layer 14 formed on the front surface of the front panel 10 can improve the brightness of the display cells.
Abstract:
In a plasma display panel containing a front plate having an dielectric glass layer for covering display electrodes formed on a transparent substrate, the glass composition forming the dielectric layer contains titanium. The glass composition should preferably contain 0.9-6.7 wt % of TiO2 on the basis of the weight of an oxide, further preferably, contain 2.6-5.5 wt % of TiO2 on the basis of the weight of an oxide.
Abstract:
A plasma display device disclosed herein is capable of enhancing the contrast of external light, facilitating application of phosphor paste on the bottom of each space surrounded by lattice-like barrier ribs, and reducing a variation in the amount of the phosphor paste applied as much as possible. The lattice-like barrier ribs include lateral ribs extending along a first direction while being nearly in parallel to each other, and vertical ribs extending along a second direction different from the first direction while being nearly in parallel to each other. Each of the lateral ribs is composed of two or more rows of rib elements. Notches for communicating spaces surrounded by the vertical ribs and the lateral ribs to each other in the first direction and/or the second direction are formed at least in portions of the vertical ribs and/or the lateral ribs.
Abstract:
A color filter (200) comprises pixels (13) separated from each other by partitions (14) formed on a substrate (12) so as to have a plurality of color elements of ink. Dummy pixels (13′) are formed outside the area in which the pixels (13) are formed. The amount of ink applied to each of said pixels and the amount of ink applied to each of said dummy pixels are substantially equal. A protective film (21) covering said pixels (13) is formed so as to also cover said dummy pixels (13′).
Abstract:
In a method of manufacturing a plasma display panel (PDP) and in a PDP manufactured by that method, electrodes are formed on a panel substrate using an offset printing technique. Furthermore, in the method, a gravure groove having a predetermined pattern is filled with a nonconductive opaque-colored paste. The nonconductive opaque-colored paste is transcribed from the gravure groove onto a first substrate via a printing blanket such that the paste is targeted at a non-discharge region between adjacent transparent electrodes. Similarly, a bus electrode paste is transcribed onto the transparent electrodes. The paste patterns are dried and fired. A dielectric layer is formed on the patterns, thereby completing a front substrate. A rear substrate is aligned with the front substrate, and a discharge gas is injected between the substrates, followed by sealing of the substrates to each other.
Abstract:
The present invention provides a light-shielding film arranged in a display device and shading a part of a display screen as a part of a color filter, which film includes fine metallic compound particles having an average particle diameter of 60 to 3000 nm and a high-molecular-weight binder, and has an optical density of 2.0 or more in a light-shaded region.
Abstract:
Disclosed is a barrier rib of a plasma display panel and forming method thereof, by which costs for fabricating the barrier rib are reduced and the fabricating method is simplified. The present invention includes forming a white paste layer on a glass substrate and forming a photosensitive black resist layer on the white paste layer, forming a photosensitive black resist pattern by patterning the photosensitive black resist layer, heating the photosensitive black resist pattern so that a wax component contained in the photosensitive black resist pattern diffuses inside the photosensitive black resist pattern, and removing a portion of the white paste layer failing to be covered with the photosensitive black resist pattern and plasticizing the photosensitive black resist pattern and the remaining photosensitive black resist pattern.