Abstract:
A conductive member includes a mesh-shaped portion (14) that includes a plurality of meshes (14A) formed of a plurality of conductive wirings (21a) extending along two directions, in which the plurality of conductive wirings (21A) are arranged by wiring pitches C in two arrangement directions, the mesh-shaped portion (14) includes a plurality of non-conductive portions (22), the non-conductive portion (22) includes at least one extension portion (E1, E2), the extension portion (E1, E2) extends along one direction among the two directions, and a width A of the extension portion (E1, E2) in an orthogonal direction orthogonal to the one direction, a gap B in the orthogonal direction between the conductive wiring (21A) and the extension portion (E1, E2) adjacent to each other in the orthogonal direction, and the wiring pitch C of the plurality of conductive wirings satisfy a relational expression of A
Abstract:
An object of the invention is to provide: a photoelectric conversion material which has excellent deposition stability such that when the photoelectric conversion material is used in a photoelectric conversion element, the change in the performance of the element due to variations in the concentration of the photoelectric conversion material is small; a photoelectric conversion element using the photoelectric conversion material; and an optical sensor and an imaging element including the photoelectric conversion element. The photoelectric conversion material of the invention is a compound (A) expressed by the following Formula (1).
Abstract:
An object of the present invention is to provide a film having a plated-layer precursor layer which is capable of forming a metal layer having excellent roll-to-roll productivity and excellent adhesiveness to a substrate. Another object of the present invention is to provide a film having a patterned plated layer as well as an electroconductive film and a touch panel using the same.The film having a plated-layer precursor layer of the present invention is a film having a plated-layer precursor layer including a substrate, and an undercoat and a plated-layer precursor layer disposed on the substrate in this order from the substrate side, in which the undercoat has a hardness on the surface thereof of 10 N/mm2 or less and a friction coefficient with release paper of 5 or less.
Abstract:
The present invention provides a photoelectric conversion element having a photoelectric conversion film which exhibits excellent photoelectric conversion efficiency and responsiveness, an imaging device, an optical sensor, and a method of using a photoelectric conversion element. In the photoelectric conversion element of the invention, a photoelectric conversion material contains at least one selected from the group consisting of a compound represented by General formula (1), a compound represented by General formula (2), and a compound represented by General formula (3).
Abstract:
The present invention provides a photoelectric conversion element having a photoelectric conversion film which exhibits excellent photoelectric conversion efficiency and responsiveness, an imaging device, an optical sensor, and a method of using a photoelectric conversion element. In the photoelectric conversion element of the invention, a photoelectric conversion material contains at least one selected from the group consisting of a compound represented by General formula (1), a compound represented by General formula (2), and a compound represented by General formula (3).
Abstract:
The present invention provides a method for producing a metal wiring-containing laminate which is capable of efficiently producing a metal wiring-containing laminate having a fine metal wiring with low resistance; as well as a metal wiring-containing laminate and a substrate with a plated layer. The method for producing a metal wiring-containing laminate of the present invention includes: a step of forming a photosensitive layer having a functional group capable of interacting with a plating catalyst or a precursor thereof on a substrate; a step of exposing the photosensitive layer in a patternwise manner and subjecting the exposed photosensitive layer to a development treatment to form a plated layer having a groove portion; a step of applying a plating catalyst or a precursor thereof to the plated layer; and a step of subjecting the plated layer, to which the plating catalyst or the precursor thereof has been applied, to a plating treatment to form a metal wiring so as to fill the groove portion.
Abstract:
An object of the present invention is to provide a photoelectric conversion element having a photoelectric conversion film which exhibits heat resistance, a high photoelectric conversion efficiency, a low level of dark currents, rapid response, and sensitivity characteristics to red and can be produced by a vapor deposition processing that is continuously performed under a high-temperature condition. The photoelectric conversion element of the present invention is a photoelectric conversion element in which a conductive film, a photoelectric conversion film containing a photoelectric conversion material, and a transparent conductive film are laminated on one another in this order, wherein the photoelectric conversion material includes a compound represented by Formula (1).
Abstract:
A transparent conductive film includes a mesh-shaped portion that is formed of a plurality of conductive wirings, in which the mesh-shaped portion includes a plurality of non-conductive portions (22) that are trimmed by the continuous conductive wiring (21A), the non-conductive portion (22) includes a pair of extension portions (E1, E2) that extend along a pair of central axes (C1, C2) orthogonal to each other and have the same length, the pair of extension portions (E1, E2) intersect each other at an intersection (K) of the pair of central axes (C1, C2), each of the pair of extension portions (E1, E2) includes a projection portion (G1, G2) that projects in a direction intersecting an extension direction, and the non-conductive portion (22) has a shape that is symmetric with respect to each of the pair of central axes. (C1, C2).
Abstract:
An electromagnetic shielding member (11) includes a substrate (12) having a three-dimensional shape, and a conductive layer member (13) that is disposed on the substrate (12) and reflects an electromagnetic wave in a wavelength-selective manner.
Abstract:
A photoelectric conversion element exhibiting excellent responsiveness and high photoelectric conversion efficiency, a method of using the photoelectric conversion element, and an optical sensor and an image sensor including the photoelectric conversion element are provided. The photoelectric conversion element includes a conductive film, a photoelectric conversion film containing a photoelectric conversion material and a transparent conductive film. The conductive film, the photoelectric conversion film and the transparent conductive film are formed in this order. The photoelectric conversion material contains a compound (A) represented by formula (1):