Abstract:
본 발명은, 전방으로 전자를 방출하기 위한 전자 방출부와, 상기 전자 방출부의 전방에 위치한, 전면으로 가시광을 방출하기 위한 광 방출부를 구비한 평판표시장치에 있어서, 상기 광 방출부는, 가시광이 전방으로 투사 가능하게 투명한 전면 기판; 상기 전면 기판의 배면에 형성된, 상기 전자 방출부에서 방출된 전자의 입사에 의해 발광(發光)하는 형광막; 및, 상기 형광막과 상기 전자 방출부 사이에 마련된, 평탄한 금속 반사막;을 구비한 것을 특징으로 하는 평판표시장치를 제공한다. 또한 본 발명은, 투명한 전면 기판의 배면에 전자의 입사에 의해 발광(發光)하는 형광막을 형성하는 단계; 평탄한 금속 반사막을 상기 형광막 상에 형성하는 단계; 및, 상기 형광막으로 전자를 방출하기 위한 전자 방출부를 상기 금속 반사막과 이격되게 상기 전면 기판 상에 장착하는 단계;를 포함하는 것을 특징으로 하는 평판표시장치의 제조방법을 제공한다.
Abstract:
A transfer film having an organic polymer and a method for forming a metal film layer using the transfer film are provided to prevent the metal thin film from being damaged by removing polymer layers using water or an organic resolvent. A transfer film(35) includes a hydrophilic polymer layer(22), a hydrophobic polymer layer(26), and a metal film. The hydrophobic polymer layer is formed on the hydrophilic polymer layer. The metal film is formed on the hydrophobic layer. The hydrophilic layer is made of a material selected from the group consisting of poly alkyl acid, poly acrylamide, poly ethylene grycol, poly ethylene oxide, poly methyl vinyl ether, poly styrensulfonic acid, and poly ethylene imine. The hydrophobic polymer layer(24) is made of a material selected from the group consisting of poly alkyl acrylate, polydiene, polyolefin, poly acetone lactide, polysiloxane, polyoxirane, polystyrene, and polypyridine.
Abstract:
PURPOSE: An electronic device and a method for manufacturing the same are provided to control the density of current by adjusting the concentration of carbon nanotubes, while allowing for mass production. CONSTITUTION: An electronic device comprises a substrate(15) on which a metal(17) is arranged; a carbon nanotube(11) coupled to the metal; and a coupling material arranged between the carbon nanotube and the metal, and which chemically couples the carbon nanotube and the metal. The coupling material is a dithiol(13'), diamine and an amino-thiol. The carbon nanotube has a surface capped with an Ni(12). A method for manufacturing an electronic device comprises a step of forming a metal on a substrate; a step of dispersing a carbon nanotube to a solution; a step of adding a coupling material to the solution; and a step of dipping the substrate into the solution and coupling the carbon nanotube to the metal.
Abstract:
PURPOSE: A conductive paste is provided to improve conductivity of an electrode, to reduce contact resistance with a lower film, and to prevent deterioration of a passivation film by making a low temperature sintering possible. CONSTITUTION: A conductive paste comprises conductive powder; metal glass which has a glass transition temperature of 600 °C or less and has a supercooled liquid phase; and an organic vehicle. At least a part of the metal glass is in an amorphous state. The amount of the conductive powder, metal glass, and organic vehicle are 30-99 wt%, 0.1-20wt%, and residual amount based on the total content of the conductive paste, respectively. An electronic device comprises an electrode which includes the sintered material of the conductive paste. The electrode does not have glass transition temperature.
Abstract:
PURPOSE: A paste is provided to form the pattern of an electrode device, to form electrode, to improve electrode conductivity and to reduce contact resistance. CONSTITUTION: A paste comprises a functional water-soluble material(1), a surface activator(3), a binder, and an oil-soluble organic solvent(20). The functional water-soluble material comprises a reverse or inverse micelle structure formed by being surrounded with the surface activator. The functional water-soluble material comprises a water-soluble material with etching performance, a water-soluble material with a doping performance, a water-soluble pigment material, a water-soluble conductive polymer material, a water-soluble metal salt or the combination thereof. The comprised amount of the reverse or inverse micelle structure is 0.1-10 weight% based on the total weight of the paste and the average particle diameter thereof is 1 nm ∼ 10micrometers.
Abstract:
PURPOSE: An electron beam generating apparatus and an x-ray generator including the same are provided to steadily arrange components by individually separating the components or coupling the components using a coupling part. CONSTITUTION: A first insulation layer(21), a gate, a second insulation layer, and a focusing gate are successively formed on a cathode electrode(20). The cathode electrode, the first insulation layer, the gate, the second insulation layer, and the focusing gate are separable. A coupling part couples and fixes the cathode electrode, the first insulation layer, the gate, the second insulation layer, and the focusing gate. A lateral supporting part(25) is fixed to the cathode electrode. An upper side supporting part(26) is connected to the lateral supporting part and is formed on the focusing gate.
Abstract:
PURPOSE: A conductive paste is provided to be able to replace or reduce conductive powder and content of the conductive powder while securing conductivity, thereby capable of reducing a production cost. CONSTITUTION: A conductive paste comprises a conductive component comprising amorphous metal and organic vehicle. The amorphous metal has a specific resistance after crystallization lower than a specific resistance before crystallization. A thickness increasing amount is 30 micron or less and a weight increasing amount is 4mg/cm^2 or less at sintering temperature. An electronic component comprises an electrode comprising a sintered material of the conductive paste. A solar cell comprises a semiconductor layer, and the electrode electrically connected to the semiconductor.
Abstract translation:目的:提供导电膏以能够在确保导电性的同时代替或减少导电粉末和导电粉末的含量,从而能够降低生产成本。 构成:导电糊包括包含非晶金属和有机载体的导电组分。 无定形金属在结晶后具有比结晶前的电阻率低的电阻率。 在烧结温度下,厚度增加量为30微米以下,重量增加量为4mg / cm 2以下。 电子部件包括包含导电浆料的烧结材料的电极。 太阳能电池包括半导体层,电极与半导体电连接。
Abstract:
PURPOSE: A method for coating a catalyst metal layer using nucleic acid and a method for forming a nano carbon are provided to uniformly coat transition metals on the surface of a carbon matrix using the nucleic acid and to grow the nano carbon having a uniform diameter and uniform density. CONSTITUTION: A method for coating a catalyst metal layer comprises the following steps: preparing an aqueous solution including a transition metal ion and nucleic acid; dipping a carbon matrix including carbon in the aqueous solution and coating the catalyst metal layer comprising transition metals on the surface of the carbon matrix through the nucleic acid. The catalyst metal layer is coated on the surface of the carbon matrix through a reaction of the nucleic acid with the transition metal ions and carbon atoms of the carbon matrix. The nucleic acid includes DNA(deoxyribonucleic acid) or RNA(ribonucleic acid).
Abstract:
PURPOSE: A composite negative electrode active material, a negative electrode including thereof, a lithium battery using thereof, and a manufacturing method thereof are provided to prevent the separation of a metal core particle and a carbon nanotube. CONSTITUTION: A composite negative electrode active material contains a metal core particle, and a carbon nanotube covalently bonded with the metal core particle in one body. The metal core particle includes a metal capable of being alloyed with lithium. A manufacturing method of the composite negative electrode active material comprises the following steps: preparing a mixed solution by mixing the metal core particle, the carbon nanotube, and an organic solvent; crushing the mixed solution; and drying the mixed solution and plasticizing the dried material in an inert atmosphere.