Abstract:
PURPOSE: A transparent plasma display panel and a manufacturing method thereof is provided to improve transmittance of a transparent PDP by applying an SiO2 transparent dielectric layer to the transparent PDP. CONSTITUTION: A transparent electrode is formed on an upper part of a front surface of a glass substrate. An SiO2 transparent dielectric layer(330) is formed by coating a sol-gel type SiO2 solution on the upper part of the front surface of the glass substrate. A transparent barrier rib(340) is formed on an upper part of the SiO2 transparent dielectric layer. A transparent phosphor layer(350) is formed by coating a transparent phosphor material on a cell region formed by the transparent barrier ribs. A protective layer(390) is formed on the upper part of the SiO2 transparent dielectric layer.
Abstract:
PURPOSE: A film forming method using low-temperature drying with gas flow is provided to improve the reliability and service life of a display by being applied to a display device. CONSTITUTION: A film material is spread on a substrate(210). The substrate with the film material is heated to the temperature less than 100°C. The specific gas including Ar and N2 is blown to the upper side of the film material for the set time to dry the film material into a film(220).
Abstract:
PURPOSE: A formation method of a solar cell with a multi-core-shell is provided to improve the efficiency of solar energy by forming a multi-film having a core cell structure. CONSTITUTION: In a formation method of a solar cell with a multi-core-shell, a bottom electrode is formed on a glass substrates(S210). A PEDOT / PSS film is formed on the bottom electrode by using an ink-jet printer(S220). The multi-layer core cell particle film having the core cell structure is formed on the upper part of the PEDOT / PSS film through an ink-jet printer(S230). An LiF(Lithum Fluoride) layer is formed in the upper part of the multi-aperture core cell particle film(S240). The top electrode is formed at the upper part of the LiF layer(S250).
Abstract:
본 발명은, 유리 격벽을 이용한 투명 플라즈마 디스플레이 패널 및 그것의 제조 방법에 관한 것으로서, 제 1 및 제 2 투명 기판에 각각 투명 전극층, 투명 유전체층을 구성하고, 제 1 투명 기판에 보호층을 추가하며, 제 2 투명 기판에 유리 소재로 이루어진 유리 격벽과 형광체를 추가로 설치함으로써, 유리 격벽에 의한 높은 투과율을 갖도록 하여 보다 선명한 양방향 화상 정보 구현이 가능해지는 효과를 제공하게 된다. PDP, 격벽, 유리, 투명, 형광체, 전극, 투명도
Abstract:
고효율 형광 램프가 개시된다. 본 발명의 일 실시예에 따른 고효율 형광 램프는 수은이 내부에 봉입된 제1관; 상기 제1관 내부에 삽입된 적어도 하나 이상의 제2관; 및 상기 제1관 및 상기 제2관 내벽에 형성되는 형광체층을 포함할 수 있고, 나아가, 상기 제2관을 상기 제1관 내부에 고정시키기 위한 고정 수단을 더 포함함으로써, 형광체의 표면적을 극대화시켜 소모전력 대비 에너지 효율을 극대화시키고, 방출되는 자외선 양을 줄여 백라이트 유닛의 표면 휘도를 증대시키며, 수명을 증가시킬 수 있다. 고효율, 형광 램프, 다중관, 형광체
Abstract:
유기 발광 다이오드 디바이스가 개시된다. 본 발명에 따른 유기 발광 다이오드 디바이스는, 기판; 상기 기판의 표면상에 배치된 투명 하부-전극층; 상기 투명 하부-전극의 표면상에 배치된 유기 EL 요소층; 상기 유기 EL 요소층의 상부에 배치된 반사 상부-전극층; 및 상기 유기 EL 요소층과 상기 반사 상부-전극층의 사이에 주입되어 형성된 나노 클러스터층을 포함하는 것을 특징으로 한다. 이로써, 유기 발광 다이오드 디바이스는 금속 나노 클러스터를 이용하여 캐리어 주입 및 형광 발광 강화 효과를 갖게 된다. 유기 발광 다이오드, 나노 클러스터, 캐리어 주입, 형광 발광
Abstract:
PURPOSE: An AC plasma display device and a manufacturing method thereof are provided to improve the luminous property of a fluorescent material by additionally adding a metal nano material to the fluorescent layer. CONSTITUTION: A front panel(51) and a rear panel(61) are formed in parallel. An electrode for gas discharge is formed on the front or rear panel. A fluorescent layer(65) which is excited with the gas electrode of the electrode and emits light, is formed on the rear panel. A metal nano body(70) is formed on a fluorescent layer to improve the light emission property of the fluorescent material. The metal nano body is selected on the fluorescent layer according to the emission wavelength of each fluorescent material.
Abstract:
PURPOSE: Alternating current(AC)-plasma display devices are provided to improve brightness by including unarranged metallic nano-particles or arranged metallic nano-structures to improve the light emitting property of a phosphor. CONSTITUTION: A front panel(51) is arranged in parallel with a rear plate(57). An electrode for discharge a gas is formed on either of the front panel or the rear panel. A phosphor layer(61) is formed on the rear panel and emits light by being excited due to the discharged gas. Nano-structures(62) are arranged on the phosphor layer in order to improve the light emitting property of the phosphor layer.
Abstract:
PURPOSE: An organic light emitting diode device is provided to reduce a driving voltage and improve power efficiency by coupling between the plasmon on the surface of a metal nano-cluster and an organic light emitting fluorescent dipole. CONSTITUTION: A transparent lower electrode layer(11) is arranged on a substrate(10). Organic EL device layers(12, 13) are arranged on the surface of the transparent lower electrode layer. A reflective upper electrode layer(15) is arranged on the organic EL device layers. A nano-cluster layer(14) is interposed between the organic EL device layers and the reflective upper electrode layer. The nano-cluster layer is composed of a metal which includes Ag, Au and Al and is opaque and reflective. The metal for the nano-cluster layer is different from the metal for the reflective upper electrode layer.
Abstract:
PURPOSE: A display plastic film structure for improving vapor permeability and oxygen permeating rate is provided to prolong the lifetime of a display device and especially the device using OLED and PDP technology by improving the vapor permeability and the oxygen permeating rate of the plastic film. CONSTITUTION: A plastic film structure for display comprises: the plastic film(210) for display; a MgO inorganic thin film(220) which is included on the upper part the plastic film; and an organic film(230) which is included on the upper part the MgO inorganic thin film. The MgO inorganic thin film and the organic film have multi-layered structure. The multi-layered MgO inorganic thin layer has a different thickness. The MgO inorganic thin film and the organic film are successively formed on the lower part of the plastic film.