Abstract:
PURPOSE: A moisture barrier layer using a self-assembled layer and an inorganic nanolaminate layer and a manufacturing method thereof are provided to reduce manufacturing time by manufacturing the self-assembled layer and the inorganic nanolaminate layer in the same apparatus. CONSTITUTION: A moisture barrier layer (100) includes a self-assembled layer (120) and an inorganic nanolaminate layer (130) which are alternatively laminated on a substrate (110). The self-assembled layer is formed by a molecular layer deposition method. The thickness of the self-assembled layer is 1 to 300 nm. The inorganic nanolaminate layer has a structure on which two kinds of inorganic layers are laminated. The thickness of the inorganic layer is 1 to 300 nm.
Abstract:
PURPOSE: A transparent conductive layer, a manufacturing method thereof, a transparent electrode using the same, and a device are provided to reduce manufacturing costs by forming an aluminum pattern through the oxidation of an aluminum layer exposed between photoresist patterns. CONSTITUTION: An aluminum layer(200) is formed on a transparent substrate(100). A photoresist is formed on the aluminum layer. A pattern of an aluminum oxide layer(400) and a pattern of the aluminum layer are alternatively formed on a transparent conductive layer. The transparent conductive layer is transferred on another transparent substrate(500). The another transparent substrate includes a polymer adhesive layer(600).
Abstract:
PURPOSE: A flexible organic/inorganic hybrid protective film for blocking moisture and/or oxygen transmission, a forming method thereof, and an electronic device including the same are provided to efficiently protect the organic layer of a device from moisture and/or oxygen by greatly improving resistivity to the permeability of moisture and/or oxygen. CONSTITUTION: A flexible substrate/metallic lamination is formed by forming a metallic thin film(20) for being anodized on a flexible material(10). A protective layer(80) is formed in one side of the metallic thin film for being anodized. A flexible substrate/metal oxide lamination(60) is formed by anodizing the flexible substrate/metallic lamination in electrolytes. A patterned photoresist layer is formed on the flexible substrate/metallic lamination.
Abstract:
본 발명은 수소이온 전도성 고분자 전해질막 및 그의 제조방법에 관한 것으로, 특히 소수성이고 다공성인 고분자막의 기공에 이미다졸계 화합물이 충진됨으로써 수소이온 전도성이 우수하고, 수소이온을 제외한 메탄올, 물 등의 다른 물질에 대한 투과성이 작을 뿐만 아니라, 전극내부저항을 줄일 수 있는 얇은 막으로 내열성이 좋으며, 화학적 내성이 있고, 막의 습윤건조에 수반되는 면적변화가 거의 없는 수소이온 전도성 고분자 전해질막 및 그의 제조방법에 관한 것이다. 소수성, 전해질막, 이미다졸, 용융염