Abstract:
The present disclosure provides a novel compound capable of greatly improving the lifetime, efficiency, electrochemical stability and thermal stability of an organic electronic device, and an organic electronic device including an organic compound layer containing the compound.
Abstract:
The present disclosure pertains to the field of carbon nanotube technologies, and provides a carbon nanotube semiconductor device and a manufacturing method thereof. The manufacturing method of a carbon nanotube semiconductor device provided in the present disclosure comprises: forming a carbon nanotube layer with a carbon nanotube solution; and treating the carbon nanotube layer with an acidic solution. The carbon nanotube semiconductor device manufactured by the method of the present disclosure has good performance uniformity.
Abstract:
The present invention relates to novel composition comprising an organic semiconductor (OSC) and organic solvents. The composition comprises at least two organic solvents. Furthermore, the present invention describes the use of these compositions as inks for the preparation of organic electronic (OE) devices, especially organic photovoltaic (OPV) cells and OLED devices, to methods for preparing OE devices using the novel formulations, and to OE devices, OLED devices and OPV cells prepared from such methods and compositions.
Abstract:
An object is to provide: an organic compound which has excellent solubility in an organic solvent at room temperature, excellent storage stability in a solution state, and excellent heat resistance; an organic semiconductor material containing the organic compound; an organic thin film obtained by a printing process at room temperature using the organic semiconductor material; and an organic semiconductor device containing the organic thin film and having high mobility and high heat resistance. The organic compound is represented by Formula (A) below, and the organic semiconductor material contains this organic compound,
wherein one of R 1 and R 2 represents an alkyl group, an aromatic hydrocarbon group having an alkyl group, or a heterocyclic group having an alkyl group, and another of R 1 and R 2 represents an aliphatic hydrocarbon group, an aromatic hydrocarbon group, or a heterocyclic group, with a proviso that R 1 and R 2 are not alkyl groups simultaneously.
Abstract:
A graphene device and an electronic apparatus including the same are provided. According to example embodiments, the graphene device includes a transistor including a source, a gate, and a drain, an active layer through which carriers move, and a graphene layer between the gate and the active layer. The graphene layer may be configured to function both as an electrode of the active layer and a channel layer of the transistor.
Abstract:
The present invention concerns a composition comprising at least one crystalline organic semiconductor and at least one compound of formula
wherein R 1 and R 2 represent a C 1 -C 50 hydrocarbyl or heterohydrocarbyl group, and wherein R 3 and R 4 represent H or a C 1 -C 24 hydrocarbyl or heterohydrocarbyl group, and wherein Ar is an aryl or heteroaryl group.
Abstract:
An organic semiconductor element 20 functions as a strain sensor, and includes a substrate 22 and an organic semiconductor layer 30 formed on the substrate 22 as a single-crystal thin film of an organic semiconductor that is a polycyclic aromatic compound with four or more rings or a polycyclic compound with four or more rings including one or a plurality of unsaturated five-membered heterocyclic compounds and a plurality of benzene rings. Since the organic semiconductor layer 30 is formed as the single-crystal thin film, an identical crystal structure is obtained regardless of formation technique. Therefore, when the same strain is given, the same carrier mobility is obtained and uniform property is obtained with respect to the strain. Accordingly, it is possible to provide strain sensors having uniform property.
Abstract:
The present disclosure provides a novel compound capable of greatly improving the lifetime, efficiency, electrochemical stability and thermal stability of an organic electronic device, and an organic electronic device including an organic compound layer containing the compound.
Title translation:ZUSAMMENSETZUNG ZUR HERSTELLUNG EINER ORGANISCHEN HALBLEITERFOLIE,ORGANISCHE HALBLEITERFOLIE UND VERFAHREN ZUR HERSTELLUNG DAVON SOWIE ORGANISCHE HALBLEITERVERBINDUNG
Abstract:
Objects of the present invention are to provide a composition for forming an organic semiconductor film that has excellent preservation stability and makes the obtained organic semiconductor element exhibit excellent driving stability in the atmosphere, to provide an organic semiconductor film using the composition for forming an organic semiconductor film, a method for manufacturing the organic semiconductor film, an organic semiconductor element, a method for manufacturing the organic semiconductor element, and to provide a novel organic semiconductor compound. A composition for forming an organic semiconductor film of the present invention contains a specific organic semiconductor having an alkoxyalkyl group as a component A and a solvent as a component B, in which a content of a non-halogen-based solvent is equal to or greater than 50% by mass with respect to a total content of the component B, and a content of the component A is equal to or greater than 0.7% by mass and less than 15% by mass.