Abstract:
본 발명은 구부림 특성을 구비한 전면 발광형 유기 발광 다이오드에 관한 것으로, 유기반도체층, 금속층 및 금속산화물층이 순차적으로 적층된 다층 구조로 이루어진 상부 투명전극의 구성을 통해, 광출력 및 효율 특성이 향상된 평판 디스플레이를 얻을 수 있으며 제조 전 공정이 열증착만으로 이루어질 수 있어 추가적인 제조 설비의 확충 없이 대면적 디스플레이 소자 제작이 가능하여 제조 원가를 낮출 수 있는 유기 발광 다이오드와 이의 제조방법을 제공한다.
Abstract:
PURPOSE: A front light emitting type organic light emitting diode and a manufacturing method thereof are provided to improve light emission efficiency by using a lithography process. CONSTITUTION: A lower electrode is formed on a first substrate(S10). An organic light emitting layer is formed on the lower electrode(S20). An upper electrode is formed on the organic light emitting layer(S30). An auxiliary electrode is bonded to the upper electrode(S40). An aperture pattern is formed on the auxiliary electrode. [Reference numerals] (AA) Start; (BB) End; (S10) Form a lower electrode on a first substrate; (S20) Form an organic light emitting layer on the lower electrode; (S30) Form an upper electrode on the organic light emitting layer; (S40) Bond an auxiliary electrode to the upper electrode formed on a second substrate; (S50) Separate the second substrate from the auxiliary electrode
Abstract:
PURPOSE: A flexible metal substrate using a mother substrate having a protective layer and a method for manufacturing a flexible electronic device and the flexible metal substrate and the flexible electronic device manufactured by the method are provided to reduce process time. CONSTITUTION: A protective layer(110) which has anticorrosion against acidic plating solution or basic plating solution is formed on a mother substrate(100). A flexible metal substrate(200) is formed on the protective layer by electroplating. The flexible metal substrate is separated from the protective layer. An electric device is formed on the flexible metal substrate. The flexible metal substrate is a cathode. [Reference numerals] (100) Mother substrate; (110) Protective layer; (200) Flexible metal substrate; (300) Electric device; (400) Sealing layer
Abstract:
본 발명은 지지 기판이나 광학소자에 접촉층, 금속층, 금속 산화물층을 순차적으로 적층하여 투명전극을 형성하고, 특히 낮은 두께에서 layer-by-layer 성장이 가능한 금속층 형성 방법을 제공한다. 본 발명에 따르면, Mg 및 Ti와 같은 첨가물(도판트)에 의하여 Ag 박막이 낮은 두께에서도 도메인끼리 연결되어 높은 투과도와 함께 낮은 면저항을 갖게 되고 고성능의 투명전극을 추가적인 공정 설비 및 단계를 거치지 않아도 형성할 수 있게 되며 이를 통해 고성능 광학소자를 제작할 수 있다.
Abstract:
The present invention relates to a method for manufacturing a quantum dot solar cell. A conductive organic layer including quantum dots is formed in electrodes with different polarities, respectively. A quantum dot solar cell is manufactured by a method of integrating the conductive organic layer, thereby improving the efficiency of a process of manufacturing a quantum dot solar cell. The method for manufacturing a quantum dot solar cell according to the present invention includes the steps of: forming a first quantum dot layer in a first electrode; forming a second quantum dot layer in a second electrode; and bonding the first quantum dot layer to the second quantum dot layer.
Abstract:
The present invention relates to a method of manufacturing an organic light emitting diode and, more specifically, to a method of manufacturing a high-efficiency white organic light emitting diode and improving the efficiency of a quantum point light emitting device while laminating an electrode on a substrate and forming a quantum point light emitting layer on the electrode. In order to achieve the above object, the method of manufacturing an organic light emitting diode according to the present invention comprises: a first electrode forming step of forming a first electrode on a first substrate; a first quantum point light emitting layer forming step of forming an organic light emitting layer including a quantum dot on the first electrode; a second electrode forming step of forming a second electrode on a second substrate; a second quantum dot light emitting layer forming step of forming an organic light emitting layer including an quantum dot on the second electrode; and a step of bonding the first quantum dot light emitting layer and the second quantum dot light emitting layer. The method of manufacturing an organic light emitting diode according to the present invention has a better interfacial contact between the quantum dot light emitting layer and a connected layer by bonding the first substrate and the second substrate with the organic light emitting layer by heat or pressure. As a result, the electrical and optical properties of a device are improved as well as the lifetime of the device is increased. [Reference numerals] (10) First substrate;(10a) Second substrate;(20) First electrode;(20a) Second electrode;(310) Hole inserting layer;(320) Hole transporting layer;(340) Electron transporting layer;(350) Electron inserting layer;(AA) Bond
Abstract:
본 발명은 표면증강라만산란 분광용 기판 및 그 제조방법에 관한 것이다. 본 발명에 따른 표면증강라만산란 분광용 기판 제조방법은 고분자 기판의 표면을 플라즈마 처리하여 상기 고분자 기판의 표면에 나노 패턴을 형성하는 나노 패턴 형성단계 및 상기 고분자 기판의 나노 패턴 상에 금속 박막을 형성하는 금속 박막 형성단계를 포함하여 구성된다. 본 발명에 따르면, 높은 반복 재현성과 더불어 제조비용이 낮고, 핫스팟(hot spots)의 유도가 효율적으로 이루어져 물질의 검출 감도를 향상시킬 수 있는 표면증강라만산란 분광용 기판 및 그 제조방법이 제공되는 효과가 있다.
Abstract:
PURPOSE: A method for manufacturing a substrate for a surface enhanced raman scattering spectroscope and the substrate manufactured by the same are provided to facilitate the induction of a hot spot when forming a metallic thin film on a unit of a polymer substrate by an oblique angle deposition, thereby enhancing the detection sensitivity of substances by efficiently inducing a hot spot. CONSTITUTION: A method for manufacturing a substrate for a surface enhanced raman scattering spectroscope is as follows. A surface of a polymer substrate is plasma-treated so that nano patterns are formed on the surface of the polymer substrate(S21). The polymer substrate is arranged to be inclined in a support holder towards an evaporation direction(S22). A metal thin film is formed on the nano patterns of the polymer substrate(S23). Nano particles are spread on the nano patterns of the polymer substrate(S24). [Reference numerals] (AA) Start; (BB) End; (S11) Step of forming nano patterns; (S12) Step of forming a metal thin film; (S13) Step of spreading metal nano particles
Abstract:
PURPOSE: A top emitting organic light emitting diode and a manufacturing method thereof are provided to prevent the deterioration of an organic compound by making every process with materials which are capable of thermal depositon. CONSTITUTION: A first electrode(200) is formed on a substrate. A second electrode(400) faces the first electrode. An organic compound layer is placed between the first electrode and the second electrode. The second electrode is composed of a multi-layered structure in which an organic semiconductor layer, a metal layer, and a metal oxide layer are successively laminated on an organic compound layer. The first electrode, the second electrode, and the organic compound layer are formed through a thermal deposition process.