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.
Abstract:
PURPOSE: A sensor including a grapheme and a manufacturing method thereof are provided to reduce manufacturing times and costs by removal in a trimming process of correcting the resistance value of a sensor. CONSTITUTION: A sensor(100) including a grapheme comprises a base member(110), a circuit pattern(120), and an electrode portion(130). The circuit pattern is formed on the base member. The electrode portion is formed in the circuit pattern. The base member is formed of polymer material. The polymer material is made of one among polyimide, PET, FR-4, and PDMS. The electrode portion is made of metal material. The sensor comprises a protective layer(140) which covers a part of the circuit pattern.
Abstract:
PURPOSE: A method for removing a carbonization catalyst from a graphene sheet and a transfer method of the graphene sheet using the same are provided to restrict or prevent damages of the graphene sheet when the carbonization catalyst is removed from the graphene sheet. CONSTITUTION: A method for removing a carbonization catalyst from a graphene sheet includes a step for removing the carbonization catalyst by suing a salt solution used as an oxidizer to oxidize the carbonization catalyst. The salt solution is a neutral or a basic salt solution. The salt solution is FeCl3, KMnO4, KClO3, KMnO3, K2CrO4 or K2Cr2O7. The carbonization catalyst is Ni, Co, Fe, Pt, Au, Al, Cr, Cu, Mg, Mn, Mo, Rh, Si, Ta, Ti, W, U, V or Zr.
Abstract:
본 발명은 외부의 전자기기로부터 방출된 전자기파를 차단하거나 전자기기 내부에서 발생된 전자기파를 외부로 방출하는 것을 방지할 목적뿐만 아니라 기기 내부의 전송회로 간에서의 간섭, 또는 외부 전파에 의한 오작동 등의 영향을 줄이기 위하여 고안된 노이즈 대책용 플렉서블 감쇄 필름 및 그를 포함하는 전자기 소자, 회로기판에 관한 것이다.
Abstract:
PURPOSE: A flexible field effect transistor and a manufacturing method thereof are provided to manufacture low voltage operation graphene FET(Field Effect Transistor) array on a plastic substrate by using ionic gel for a gate insulator. CONSTITUTION: A semiconductor layer includes a carbon nano-structure which is arranged to form a channel region between a source electrode and a drain electrode. The carbon nano structure includes graphene. The graphene is formed on a metal catalytic layer by chemical vapor deposition. An ionic gel layer is formed between the semiconductor layer and the gate electrode including the carbon nano-structure. The ionic gel layer forms an insulator layer between the channel region and the gate electrode.
Abstract:
PURPOSE: A method for manufacturing graphene on a face centered cubic metal catalyst with a single oriented texture is provided to epitaxially grow graphene by securing a single oriented crystal texture to a metal catalyst substrate. CONSTITUTION: A method for manufacturing graphene manufactures the graphene on a face centered cubic metal catalyst with a single oriented texture. The cold rolling reduction rate of the metal catalyst is more than or equal to 85%. The thickness of the metal catalyst is lower than or equal to 50um. The metal catalyst is re-crystallization annealed under hydrogen atmosphere and is re-heated under methane and hydrogen atmosphere to grow graphene. The metal catalyst is one or the alloy of copper, silver, or gold.
Abstract:
본 발명은 광섬유의 소정 영역의 코어에 탄소나노구조체 층이 형성되어 있는 광섬유, 상기 광섬유를 포함하는 광섬유 화학 센서, 및 상기 광섬유 코어에 탄소나노구조체 층을 형성하는 방법에 관한 것으로서, 탄소나노구조체 층 표면의 굴절률이 가스 및 입자 등의 흡착에 대하여 민감하게 반응하는 것을 이용함으로써 상기 광섬유의 일부 코어 영역에 탄소나노구조체 층이 형성된 광섬유를 기체, 액체, 및 입자 등에 대한 센서에 응용할 수 있다. 광섬유, 탄소나노구조체, 그래핀, 센서