摘要:
A first object of the present invention is to provide a method for producing a cyclic imide compound with high yield and high purity. A second object of the present invention is to provide a composition that can be used in the method for producing a cyclic imide compound with high yield and high purity. A third object of the present invention is to provide an intermediate compound that can be used in the method for producing a cyclic imide compound with high yield and high purity. The method for producing a cyclic imide compound according to the present invention includes reacting a compound represented by formula (1) below with at least one amine compound to obtain a compound represented by formula (2) below.
摘要:
An object of the present invention is to provide a composition having excellent antiviral activity. Another object of the present invention is to provide a spray and a wiper that use the above composition. An alkaline composition according to an embodiment of the present invention contains a compound having an amino group and at least one kind of functional group selected from the group consisting of an acidic group, a hydroxyl group, and a phenyl group and having a molecular weight equal to or higher than 85, and a solvent containing an alcohol.
摘要:
The present invention provides an n-type thermoelectric conversion layer, which has excellent electric conductivity and thermoelectromotive force and is inhibited from experiencing a change of the thermoelectromotive force even in a high-temperature environment, a thermoelectric conversion element having the n-type thermoelectric conversion layer, and a composition for forming an n-type thermoelectric conversion layer. A thermoelectric conversion element of the present invention has an n-type thermoelectric conversion layer and a p-type thermoelectric conversion layer electrically connected to the n-type thermoelectric conversion layer, in which the n-type thermoelectric conversion layer contains carbon nanotubes and a compound containing a repeating unit represented by Formula (1). In Formula (1), L1 represents a divalent hydrocarbon group. n represents an integer of equal to or greater than 2.X represents —O—, —CH(OH)—, —S—, —OC(═O)O—, —C(═O)—, —OC(═O)—, or a divalent group containing an amide group.
摘要:
A first object of the present invention is to provide a photoelectric conversion element having a high external quantum efficiency and small variation in response. A second object of the present invention is to provide an imaging element, an optical sensor, and a compound related to the photoelectric conversion element. The photoelectric conversion element includes, in the following order, a conductive film, a photoelectric conversion film, and a transparent conductive film, in which the photoelectric conversion film contains a compound represented by Formula (1).
摘要:
Provided are an organic thin film transistor that has high bendability and can suppress a decrease in carrier mobility caused by a pinhole of an insulating film or leveling properties and a method of manufacturing the organic thin film transistor. The organic thin film transistor includes: a gate electrode; an insulating film that is formed to cover the gate electrode; an organic semiconductor layer that is formed on the insulating film, and a source electrode and a drain electrode that are formed on the organic semiconductor layer, in which the insulating film includes an inorganic film consisting of SiNH.
摘要:
An object of the present invention is to provide a semiconductor layer (n-type semiconductor layer) which demonstrate an excellent thermoelectric conversion performance and exhibits n-type characteristics. Another object of the present invention is to provide a thermoelectric conversion layer formed of the n-type semiconductor layer and a composition for forming an n-type semiconductor layer. Still another object of the present invention is to provide a thermoelectric conversion element, which has the thermoelectric conversion layer as an n-type thermoelectric conversion layer, and a thermoelectric conversion module.The n-type semiconductor layer of the embodiment of the present invention contains a nanocarbon material and an onium salt represented by a specific structure.
摘要:
A photoelectric conversion element having an electrically conductive support, a photoconductor layer including an electrolyte, a charge transfer layer including an electrolyte, and a counter electrode, in which the photoconductor layer has semiconductor fine particles carrying a metal complex dye represented by the following Formula (1), and a dye-sensitized solar cell; and a metal complex dye, a dye solution, and a terpyridine compound, or an esterified product thereof, each of which is used in the photoelectric conversion element and the dye-sensitized solar cell, ML1L2(X)n1.CImY Formula (1) in Formula (1), M represents a metal ion, L1 represents a tridentate ligand having a group L represented by the following Formula (LV-1) or (LV-2); L2 represents a bidentate or tridentate ligand which coordinates to M with an anion, in which a ring including a ring-constituting nitrogen atom which coordinates to M with an lone electron pair has an organic group RVL: -(RVL)nVL; X represents a monodentate ligand; n1 represents 0 or 1; CI represents a required counterion; and mY represents an integer of 0 to 3, -RV1=RV2-RV3 Formula (LV-1) —C≡C—RV3 Formula (LV-2) in the formulae, RV1 and RV2 each independently represent a nitrogen atom or CRV4, RV4 represents a hydrogen atom or a substituent, and RV3 represents an aryl group or a heteroaryl group; RVL represents a specific aromatic ring group or the like; and nVL represents an integer of 0 or more.
摘要:
Provided are a thermoelectric conversion element which has a thermoelectric conversion layer made of an organic material and is capable of generating electric power at a favorable efficiency and a method for manufacturing the thermoelectric conversion element. When the thermoelectric conversion element has a first substrate having a highly thermal conductive portion having a higher thermal conductivity than other regions in a surface direction, a thermoelectric conversion layer which is formed on the first substrate, is made of an organic material, and has a higher electrical conductivity in the surface direction than in a thickness direction, and a second substrate which is formed on the thermoelectric conversion layer and has a highly thermal conductive portion which has a higher thermal conductivity than other regions in the surface direction and in which the highly thermal conductive portion does not fully overlap the highly thermal conductive portion of the first substrate in the surface direction, the problem is solved.
摘要:
An organic photoelectric conversion element composition including a p-type-and-n-type linked organic semiconductor polymer represented by any one of formulas (1) to (5), a thin film and a photovoltaic cell each containing the same, an organic semiconductor polymer and a compound each for use in these, and a method of producing the polymer: wherein, in formulas, A to A4 represent a group of a p-type organic semiconductor unit, and B to B3 represent a group of an n-type organic semiconductor unit; L1 to L4 represent a divalent or trivalent linking group; herein, in the formulas, at least one bonding hand represented by -* in the structures shown upperward and downward, and in the case of formula (4), L4 and (b), and L1 or L2 and (a), bond directly or through a divalent linking group; l, n, r, t, u and v represent an integer of 1 to 1,000; m and s represent an integer of 1 to 10; and p, q, l′ and n′ represent an integer of 0 to 1,000; in which p and q do not simultaneously represent 0.
摘要:
An organic photovoltaic cell, containing a first electrode; a second electrode; and a photoelectric conversion layer between the first electrode and the second electrode, wherein the photoelectric conversion layer contains a polymer having a structural unit represented by formula (I): wherein X represents S, NR2, O, Se or Te; Y represents NR2, O, Te, SO, SO2 or CO; and R1 and R2 represent a hydrogen atom or a substituent.