Abstract:
A method for the production of organic solar cells or photodetectors, particularly based on organic polymers, comprising the following steps:—a first organic n- or p-conductive semiconductor layer is applied to an electrode, to the solid first organic semiconductor layer is applied a second organic semiconductor layer of the respective other conductivity whose solvent partially dissolves the first organic semiconductor layer, such that the first semiconductor layer mixes with the second mixed layer;—a second electrode is applied opposite the first.
Abstract:
Photovoltaic cells containing electrically conductive particles in a electrode, as well as related components, systems, and methods, are disclosed.
Abstract:
The invention relates to a solar cell comprising at least two photoactive layers. Solar cells or photovoltaic elements of this type are also called tandem solar cells or photovoltaic multicells. Tandem solar cells are comprised, in essence, of an optical and electrical series connection of two photoactive layers. The invention particularly relates to organic tandem solar cells comprising according to the invention at least one shared electrode disposed between two photovoltaically active layers and made substantially of organic material.
Abstract:
The invention relates to a diode matrix for controlling displays and to a production method therefor. The diode matrix comprises at least one (partially) organic diode and can be produced, at least in part, by using printing techniques.
Abstract:
The invention relates to a material for a conductive organic functional layer, particularly one based on PEDOT-PSS [poly(3,4-ethylenedioxythiophene)-poly(styrene sulfonate)]. Conductivity is significantly increased by replacing the solvent.
Abstract:
The inventive concept provides for a process1 for depositing a substance on a nanostructured surface, particularly for organic components, to yield a substantially consistent and homogeneous coating on the nanostructured surface. The substance to be applied is dissolved in a solvent. The coating for the nanostructured surface is then produced by depositing the first dissolved substance on the nanostructured surface.
Abstract:
The invention relates to a multifunctional housing for so-called white/grey goods, in particular an electrical domestic appliance, a consumer electronic product, including mobile devices such as mobile telephones etc and/or a bulky device, for example from the medical, power generating plant, or the automobile sphere. The optional colours are already an improvement over existing possibilites, but in particular, the combinations made possible by the inclusion of various sensors and/or energy supplies such as solar cells are particularly advantageous.
Abstract:
The invention relates to an optically controllable screen input aid which is integrated, or can be integrated, into a display unit and essentially consists of semiconductor components which are arranged in a raster.
Abstract:
The invention relates to the integration of semiconductor components, particularly (organic) solar cells and/or power converters, in eyeglasses.