Abstract:
A variety of methods for fabricating organic photovoltaic-based electricity-generating military aircraft windows are described. In particular, a method for fabricating curved electricity- generating military aircraft windows utilizing lamination of highly flexible organic photovoltaic films is described. High-throughput and low-cost fabrication options also allow for economical production.
Abstract:
본 발명은 유기발광소자용 기판, 그 제조방법 및 이를 포함하는 유기발광소자에 관한 것으로서 더욱 상세하게는 광추출 효율 향상은 물론, 우수한 생산성 및 제작 효율을 갖는 유기발광소자용 기판, 그 제조방법 및 이를 포함하는 유기발광소자에 관한 것이다. 이를 위해, 본 발명은, 유기발광소자로부터 발광된 빛이 외부로 방출되는 일면에 배치되는 기판에 있어서, 베이스 기판; 상기 베이스 기판 상에 형성되고, 다수의 광산란 입자로 이루어진 광산란층; 및 상기 광산란층 상에 형성되는 투명 전도막을 포함하되, 상기 다수의 광산란 입자 사이 사이에 형성되는 기공들 중 일부 또는 전부에는 상기 투명 전도막을 이루는 금속산화물이 채워져 있는 것을 특징으로 하는 유기발광소자용 기판, 그 제조방법 및 이를 포함하는 유기발광소자를 제공한다.
Abstract:
An electrode-attached translucent substrate includes a translucent glass substrate including a base glass material and scattering bodies dispersed in the base glass material; a covering layer including a first layer made of a material selected from a group of a metal nitride, a metal oxide and a metal nitride-oxide directly formed on the translucent glass substrate; and a translucent electrode formed on the covering layer.
Abstract:
Methods of forming an organic thin film transistor are provided. The methods include providing a substrate and depositing and patterning a gate electrode on a first surface of the substrate. The methods include dispensing a first droplet of an insulating material on the gate electrode on the substrate and dispensing a second droplet of a semiconductor material on a first surface of the first droplet. The second droplet forms a hydrophobic structure having a central cavity. The methods also include dispensing a third droplet of a conductor material on a first surface of the second droplet such that the conductor material substantially fills the central cavity of the hydrophobic structure and forms a conductor material layer around the central cavity to define a source electrode and a drain electrode of the organic thin film transistor.
Abstract:
The subject technology relates to a method including steps for disposing a first electrically conductive material on a substrate to form a first layer of electrodes on the substrate, wherein the first layer includes a source electrode and a drain electrode, and printing a film including carbon nanotubes between the source electrode and the drain electrode, thereby defining at least a first interface between the carbon nanotube film and the source electrode and a second interface between the carbon nanotube film and drain electrode. In certain aspects, the method can further include steps for disposing a second electrically conductive material over the first interface between the carbon nanotube film and the source electrode and the second interface between the carbon nanotube film and the drain electrode. In certain aspects, a transistor device is also provided.
Abstract:
The present invention relates to a method of manufacturing a light emitting device with improved internal out-coupling by providing an intermediate layer (11) with a modulated surface. This is achieved by exposure of a flat glass surface (100) to a saturated etching fluid or by providing local changes in the chemical surface composition of the glass substrate or by depositing locally separated sub-μιη particles. By removal of the etching fluid, either ultrafine particles (12) are deposited or defects are generated consisting of glass component areas of sub^m-size extension with a high sticking coefficient with respect to the species deposited later on from the gas phase. These ultrafine particles or defects induce locally different growth by different sticking coefficients, with preferential columnar cone shaped growth, leading to small bumps (14) on the top surface of the intermediate layer (11), which are then over-coated with the layers (200) of the light emitting element and induce sufficient scattering by subsequent reflections.