Abstract:
Provided is a method of manufacturing a film, including: a manufacturing step of forming a film by performing movement, in a state in which a blade surface of a coating blade disposed to be spaced so as to face a substrate surface of a substrate is in contact with a solution for forming a film which is provided between the blade surface and the substrate surface, in a first direction in a plane parallel to the substrate surface, in which the solution is stored in a liquid reservoir between the blade surface and the substrate surface, and at least a portion of an outer peripheral end portion of the coating blade which is in contact with the solution is tilted with respect to the first direction in a plane parallel to the substrate surface. Accordingly, a method of manufacturing a film for forming a high quality film with high productivity is provided.
Abstract:
An object of the present invention is to provide a compound which, when used for organic semiconductor films in organic thin-film transistors, makes the organic thin-film transistors exhibit a high carrier mobility, a material for an organic thin-film transistor for which the compound is used, a composition for an organic thin-film transistor, an organic thin-film transistor and a method for manufacturing the same, and an organic semiconductor film.An organic thin-film transistor of the present invention contains a compound represented by General Formula (1) in an organic semiconductor film (organic semiconductor layer) thereof.
Abstract:
An object of the present invention is to provide an organic thin-film transistor which has an organic semiconductor film produced using a compound having an excellent solubility in organic solvents and has an excellent carrier mobility, a compound, a material for an organic thin-film transistor for which the compound is used, a composition for an organic thin-film transistor, a method for manufacturing an organic thin-film transistor, and an organic semiconductor film.An organic thin-film transistor of the present invention contains a compound which is represented by General Formula (1) or General Formula (2) in an organic semiconductor film (organic semiconductor layer) thereof and has a molecular weight of 3,000 or less. In General Formula (1) and General Formula (2), at least one of R5, . . . , or R8 is a group other than a hydrogen atom.
Abstract:
A transistor and a manufacturing method of a transistor which prevents a decrease in mobility, prevents a decrease in a withstand voltage of the insulating layer, and prevents a short circuit between a gate electrode and a semiconductor layer due to curvature. A substrate having insulating properties, a source electrode and a drain electrode disposed in a surface direction of a main surface of the substrate by being separated from each other, a gate electrode disposed between the source electrode and the drain electrode in the surface direction of the substrate, a semiconductor layer disposed in contact with the source electrode and the drain electrode, and an insulating film disposed between the gate electrode and the semiconductor layer in a direction perpendicular to the main surface of the substrate are included, and a gap region is formed between the semiconductor layer and the insulating film.
Abstract:
Provided are an organic transistor with high carrier mobility having a semiconductor active layer containing a compound which is represented by the following formula and has a molecular weight of equal to or less than 3,000, a compound, an organic semiconductor material for a non-light-emitting organic semiconductor device, a material for an organic transistor, a coating solution for a non-light-emitting organic semiconductor device, a method for manufacturing an organic transistor, a method for manufacturing an organic semiconductor film, an organic semiconductor film for a non-light-emitting organic semiconductor device, and a method for manufacturing an organic semiconductor material. (X represents an oxygen, sulfur, selenium, or tellurium atom or NR5; Y and Z each represents CR6, an oxygen, sulfur, selenium, or nitrogen atom, or NR7; a ring containing Y and Z is an aromatic heterocycle; any one of R1 and R2 and the aromatic heterocycle containing Y and Z or any one of R3 and R4 and a benzene ring may be bonded to each other through a specific divalent linking group; R1, R2, and R5 to R8 each represent a hydrogen atom, an alkyl group, an alkenyl group, an alkynyl group, an aryl group, or a heteroaryl group; R3 and R4 each represent an alkyl group, an alkenyl group, an alkynyl group, an aryl group, or heteroaryl group; and each of m and n is an integer of 0 to 2.)
Abstract translation:(X表示氧,硫,硒或碲原子或NR5; Y和Z各自表示CR6,氧,硫,硒或氮原子或NR7;含有Y和Z的环是芳香族杂环;任何一种 的R 1和R 2以及含有Y和Z的芳族杂环或者R 3和R 4中的任何一个和苯环可以通过特定的二价连接基彼此键合; R 1,R 2和R 5至R 8各自表示氢原子, 烷基,烯基,炔基,芳基或杂芳基; R 3和R 4各自表示烷基,烯基,炔基,芳基或杂芳基; m n为0〜2的整数。)
Abstract:
A separation device includes: a container that includes a storage portion for storing liquid containing magnetic particles; and a coil that separates the magnetic particles from the liquid by generating a magnetic field through application of current, causing a magnetic force to act on the magnetic particles in a state where the coil stops with respect to the storage portion, and causing the magnetic particles to move from the storage portion against gravity acting on the liquid containing the magnetic particles.
Abstract:
A touchpad includes a flat surface portion and a protruding solid portion having a hemispherical shape. An operation recognition part and an operation validity determination part are implemented in a touchpad control part. The operation recognition part recognizes a gesture operation performed on an operation region of the touchpad. The operation validity determination part determines only a rotating slide operation that is a slide operation with a finger along a lower periphery of the solid portion as a valid operation while an automobile is in a state of manual driving.
Abstract:
Provided are an organic thin film transistor, an organic semiconductor film, a compound, an organic thin film transistor-forming composition, and a method of manufacturing the organic thin film transistor. The organic thin film transistor includes the organic semiconductor film. The organic semiconductor film includes a compound represented by a specific formula. The organic semiconductor film, the compound, and the organic thin film transistor-forming composition can be preferably used in the organic thin film transistor. The method of manufacturing the organic thin film transistor includes a step of forming an organic semiconductor film by applying the organic thin film transistor-forming composition to a substrate.
Abstract:
An object of the present invention is to provide an organic thin film transistor that has an organic semiconductor film manufactured by using a compound having excellent solubility to an organic solvent and that has excellent carrier mobility, a novel compound, an organic thin film transistor material, an organic semiconductor film, an organic thin film transistor composition, and a method of manufacturing an organic thin film transistor using this. The organic thin film transistor according to the present invention has an organic semiconductor film containing a compound represented by Formula (1).
Abstract:
An information display system includes: a tag including a signal receiving unit, an image-memory-type display medium that displays a display image on the basis of an image display signal, and a storage unit including a first storage region in which identification information and the image display signal are stored and a second storage region in which recording information indicating a storage state of the image display signal in the first storage region is stored; and a reader/writer including a contact electrode unit that comes into contact with the signal receiving unit, an information recognition unit that reads the identification information and the recording information, a memory that stores image display information corresponding to the identification information and identification information, and a writing unit that transmits an image display signal based on the image display information and a write signal for changing the recording information to indicate that the image display signal has been stored through the contact electrode unit.