Abstract:
PURPOSE: The flexibility transparency heating element using graphene and the manufacturing method thereof are formed differently the floor number of graphene. The calorific efficiency of the heating element is multiplied. CONSTITUTION: A graphene layer(140) is at least formed of a flexibility transparent substrate(100) in a single-side. By offering the reaction gas and the heat including the carbon source on the metallic catalyst and reacting the graphene layer is formed. A electrode(120) more than the pair is formed as long as it is connected to the graphene layer. The protective layer is formed in electrode and the graphene layer. The electrode is patterned to the fine structure.
Abstract:
PURPOSE: A surface plasmon resonance sensor including a prism with a metallic carbon nano-structure layer and a manufacturing method thereof are provided to secure the operation of a surface plasmon resonance sensor with a fixed wavelength because a metallic graphene layer is evenly deposited on one side of a prism. CONSTITUTION: A surface plasmon resonance sensor comprises a light source part(10), a sensing part(20), and a light receiving part(30). The sensing part comprises a prism(200) in which a metallic carbon nano-structure layer(300) is formed on one side and collects the light reflected off the prism. The metallic carbon nano-structure layer is selected from the group consiting of graphene, graphite, carbon nano-tube, and their combination.
Abstract:
PURPOSE: A touch panel including graphene and a method for manufacturing the same are provided to implement a superior flexibility and performance. CONSTITUTION: A second substrate(130) is placed facing a first substrate(110). A first conductive film(120) is placed on one or both sides of the first substrate. A second conductive film(120) is placed on one or both sides of the second substrate. A plurality of first electrodes are electrically connected with the first conductivity layer. A plurality of second electrodes are electrically connected with the second conductivity layer.