摘要:
The sintered magnesium oxide according to one embodiment has a density of less than 3.5 g/cm3 and an average grain size of about 3 to about 10 μm. A MgO protective layer made from the sintered magnesium oxide reduces a discharge voltage of a plasma display panel, improves its response speed, and provides it with high-purity film quality.
摘要翻译:根据一个实施方案的烧结氧化镁的密度小于3.5g / cm 3,平均粒度为约3至约10μm。 由烧结氧化镁制成的MgO保护层降低等离子体显示面板的放电电压,提高其响应速度,并提供高纯度的膜质量。
摘要:
A sintered magnesium oxide has a density of 3.5 g/cm3 or more, and has a grain size that is more than or equal to thirty times the average particle diameter of magnesium oxide particles. An MgO protective layer made from the sintered magnesium oxide reduces a discharge voltage of a plasma display panel, improves response speed, and provides a high-purity film quality.
摘要翻译:氧化镁烧结体的密度为3.5g / cm 3以上,其粒径大于或等于氧化镁粒子平均粒径的30倍。 由烧结氧化镁制成的MgO保护层降低等离子体显示面板的放电电压,提高响应速度,并提供高纯度的膜质量。
摘要:
A protecting layer is formed of a magnesium oxide layer and electron emission promoting material formed on the magnesium oxide layer. The electron emission promoting material may be patterned on the magnesium oxide layer, or may be sprayed and heat-treated on the surface of the magnesium oxide layer. The protecting layer exhibits excellent electron emission characteristics while not being substantially damaged by plasma ions, thereby improving the reliability of a PDP.
摘要:
Provided are a protecting layer for a plasma display panel (PDP), a method of forming the same, and a PDP including the protecting layer. The protecting layer includes a magnesium oxide-containing layer having a surface to which magnesium oxide-containing particles having a magnesium vacancy-impurity center (VIC) are attached. The protecting layer is resistant to plasma ions and has excellent electron emission effects, and thus, a PDP including the protecting layer can be operated at low voltage with high discharge efficiency.
摘要:
Provided are a protecting layer for a plasma display panel (PDP), a method of forming the same, and a PDP including the protecting layer. The protecting layer includes a magnesium oxide-containing layer having a surface to which magnesium oxide-containing particles having a magnesium vacancy-impurity center (VIC) are attached. The protecting layer is resistant to plasma ions and has excellent electron emission effects, and thus, a PDP including the protecting layer can be operated at low voltage with high discharge efficiency.
摘要:
A protecting layer is formed of a magnesium oxide and at least one additional component selected from the group consisting of a copper component selected from copper and a copper oxide, a nickel component selected from nickel and a nickel oxide, a cobalt component selected from cobalt and a cobalt oxide, and an iron component selected from iron and an iron oxide; a composite for forming the protecting layer; a method of forming the protecting layer; and a plasma display panel including the protecting layer. The protecting layer, which is used in a PDP, protects an electrode and a dielectric layer from a plasma ion generated by a gaseous mixture of Ne and Xe, or He, Ne, and Xe, and discharge delay time and dependency of the discharge delay time on temperature can be decreased and sputtering resistance can be increased.
摘要:
A protecting layer is formed of a magnesium oxide and at least one additional component selected from the group consisting of a copper component selected from copper and a copper oxide, a nickel component selected from nickel and a nickel oxide, a cobalt component selected from cobalt and a cobalt oxide, and an iron component selected from iron and an iron oxide; a composite for forming the protecting layer; a method of forming the protecting layer; and a plasma display panel including the protecting layer. The protecting layer, which is used in a PDP, protects an electrode and a dielectric layer from a plasma ion generated by a gaseous mixture of Ne and Xe, or He, Ne, and Xe, and discharge delay time and dependency of the discharge delay time on temperature can be decreased and sputtering resistance can be increased.
摘要:
A protecting layer of a Plasma Display Panel (PDP) is composed of metal and metal oxide. The metal is disposed away from the surface of the protecting layer by 10% or less than the thickness of the protecting layer. Furthermore, in a method of forming the protecting layer for a PDP and in a PDP employing the protecting layer, the metal is disposed away from the surface of the protecting layer by 10% or less than the thickness of the protecting layer.
摘要:
Provided are a protective layer made of magnesium oxide containing at least one rare earth element selected from the group consisting of the rare earth elements, in which the content of the at least one rare earth element is from about 5.0×10−5 to about 6.0×10−4 per 1 part by weight of the magnesium oxide, a composite for forming the protective layer, a method of forming the protective layer, and a plasma display panel including the protective layer. The protective layer can reduce a discharge delay time and the temperature dependency of the discharge delay time, and thus, is suitable for single scan and an increase in Xe content.
摘要:
Herein is provided a protective layer for a plasma display panel and a method of forming the protective layer. The protective layer is formed on a substrate of the plasma display panel which includes sustain electrodes. Grain columns having directionality are formed in the texture of the protective layer. Because the direction of the grain columns can be controlled, the general orientation of the voids is known, and an electric field can be applied for discharge in a direction where the number of voids is smallest. As a result, the etching rate of the protective layer can be reduced, thereby increasing the lifetime of the protective layer. In addition, since discharge ions are less likely to impact the protective layer rapid emission of secondary electrons and reduced discharge delay time is realized. It is therefore possible to shorten the discharge delay time and to improve the breakdown voltage of discharge.