Abstract:
A coloring composition including: (A) a colorant; (C) a binder resin; (D) a polymerizable compound; and (F) a solvent, whereinthe colorant (A) comprises (A1) a pigment having a structure represented by the following Formula (X), and (A2) an isoindoline pigment, andwherein the solvent (F) comprises (G) at least one member selected from the group consisting of an alcohol, a ketone, and an alkyl lactate: and wherein, in the Formula (X), Ra and Rb each independently represent a monovalent organic group, and p and q each independently represent an integer from 0 to 5.
Abstract:
A photosensitive composition, suitable for a hardened film capable of sufficiently blocking light in the visible range and sufficiently transmitting light in the near infrared region, is provided. The photosensitive composition contains a colorant, a compound having an ethylenic unsaturated group, a photopolymerization initiator and a solvent. The colorant contains (A1) to (A3);(A1) a colorant of the following formula (1): (A2) a blue colorant, a green colorant, or both, and(A3) a yellow colorant, a red colorant, or both. R1 and R2 is a hydrogen atom, a hydroxyl group, a methoxy group or an acetyl group. R3 and R4 is a phenylene group or a direct bond. R5 and R6 is a direct bond or an alkanediyl group having 1 to 10 carbon atoms, with the proviso that R3 and R5 are not simultaneously direct bonds, and R4 and R6 are not simultaneously direct bonds.
Abstract:
Provided is a drug useful for photoimmunotherapy. Specifically, provided is a conjugate including an antibody molecule, a particle having an average particle diameter of 100 nm or less, and a photosensitive portion. In the conjugate, the particle having an average particle diameter of 100 nm or less is linked to the antibody molecule, and at least one of the antibody molecule or the particle is bound to the photosensitive portion. The photosensitive portion is a portion showing increase of hydrophobicity when irradiated with a light beam having a wavelength of from 500 nm to 900 nm or a portion containing a phthalocyanine skeleton.
Abstract:
The present invention intends to provide a solid-state imaging device having minimum production costs and high detection accuracy. A solid-state imaging device includes a first optical layer that transmits visible light and at least a part of near-infrared light, a second optical layer that absorbs at least a part of the near-infrared light and a pixel array that includes a first light-receiving element that detects the visible light transmitted through the first optical layer and the second optical layer and a second light-receiving element that detects the near-infrared light transmitted through the first optical layer, in which the second optical layer has an opening at a part corresponding to the second light-receiving element, the first optical layer includes a compound (A) having at least one absorption maximum at the wavelength of from 750 to 900 nm,the second optical layer includes a compound (B) having at least one absorption maximum at the wavelength of from 755 to 1050 nm, an absorption maximum wavelength on a longest wavelength side of the compound (B) is larger than an absorption maximum wavelength on the longest wavelength side of the compound (A), and a difference between both is from 5 to 150 nm.
Abstract:
Provided is a solid-state imaging device that includes: first pixels provided with a color filter layer having a transmission band in a visible light wavelength region on a light-receiving surface of a first light-receiving element; second pixels provided with an infrared pass filter layer having a transmission band in an infrared wavelength region on a light-receiving surface of a second light-receiving element; and an infrared cut filter layer that is provided on a lower surface side of the color filter layer and transmits light in the visible light wavelength region by blocking light in the infrared wavelength region; wherein the infrared cut filter layer is formed with an infrared-absorbing composition containing a compound having a maximum absorption wavelength in an wavelength range of from 600 to 2000 nm, and at least one kind selected from a binder resin and a polymerizable compound.