Abstract:
An optical information recording medium includes at least one recording layer. The recording layer includes a recording material comprising a polymer compound to which a one-photon absorption dye is bonded, and a coupling strength Δ2 between the one-photon absorption dye and the polymer compound in the recording material is higher than a coupling strength estimated to be exerted between the same one-photon absorption dye and the same polymer compound if the one-photon absorption dye is dispersed in the polymer compound in the recording material.
Abstract:
The magnetic recording medium is a particulate magnetic recording medium for heat-assisted recording, as well as includes a magnetic layer comprising ferromagnetic powder and binder on a nonmagnetic organic material support and a heat-diffusing layer of higher thermal conductivity than the magnetic layer between the nonmagnetic organic material support and the magnetic layer.
Abstract:
An optical information recording medium 10 comprises a plurality of recording layers 14 and intermediate layers 15 each provided between the recording layers 14. Each of the recording layers 14 includes a polymer binder and dye dispersed in the polymer binder, and a thickness of each recording layer is equal to or greater than 50 nm. A first interface (near-side interface 18) is formed between a recording layer 14 and an intermediate layer 15 that is adjacent to the recording layer 14 on one side of the recording layer 14 in a thickness direction of the recording layer 14, and a second interface (far-side interface 19) is formed between the recording layer 14 and an intermediate layer 15 that is adjacent to the recording layer 14 on the other side of the recording layer 14 in the thickness direction of the recording layer 14. When the dye is irradiated with a recording beam and generates heat by absorption of the recording beam, the polymer binder undergoes a change in shape by the generated heat, so that at least one of the first interface and the second interface undergoes a change in shape and sticks out toward the intermediate layer 15 to form a protrusion, whereby information is recorded in the optical information recording medium 10.
Abstract:
Provided is a pre-rinsing liquid used in a method including forming a resist film including an actinic ray-sensitive or radiation-sensitive composition on a substrate, and irradiating the resist film with actinic rays or radiation to form a pattern on the substrate, and used for subjecting the substrate to a pre-rinsing treatment before applying the actinic ray-sensitive or radiation-sensitive composition onto the substrate. The pre-rinsing liquid satisfies the following conditions (1) and (2): (1) the pre-rinsing liquid includes 80% by mass or more of an organic solvent with respect to the total mass of the pre-rinsing liquid, and (2) the organic solvent is at least one organic solvent selected from the group consisting of alcohols, cyclic ethers, glycol ethers, glycol ether acetates, hydrocarbons, ketones, lactones, and esters.
Abstract:
A recording material includes a dye-bonded polymer compound which contains a polymer compound to which a one-photon absorption dye is bonded, and a glass transition temperature of the recording material is higher than 200° C. An optical information recording medium includes a recording layer and an intermediate layer adjacent to the recording layer, and the recording layer contains the above-described recording material.
Abstract:
A method for manufacturing a multilayer structure sheet for manufacturing an optical information recording medium having a multilayer structure with a plurality of recording layers comprises: an adhesive layer forming step of forming an adhesive layer on a first release sheet to obtain a first sheet; a recording layer forming step of forming a recording layer containing a polymer on a second release sheet or a release assisting layer formed on the second release sheet to obtain a second sheet; a laminating step of laminating the recording layer of the second sheet on the adhesive layer of the first sheet to obtain a third sheet in which the second sheet is laid on the first sheet; and a heating step of heating the second sheet.
Abstract:
An optical information recording medium includes: a recording layer 12 comprising a multi-photon absorption compound and a one-photon absorption compound; and a supporting member (base layer 11) configured to support the recording layer 12. In this optical information recording medium, absorption of multiple photons by the multi-photon absorption compound and absorption of one photon by the one-photon absorption compound cause a void to be generated in the recording layer, whereby information is recordable by modulation based on a presence or absence of a void.
Abstract:
Provided is a laminate where malfunction is not likely to occur for use as a touch panel sensor. The laminate includes: a substrate; a first wiring pattern portion that is disposed on one surface side of the substrate and consists of a plurality of first metal wires; and a second wiring pattern portion that is disposed on another surface side of the substrate and consists of a plurality of second metal wires, in which both of the first metal wires and the second metal wires include metal and carbon atoms, and in a case where an average resistivity of the first metal wires is represented by a resistivity R1 and an average resistivity of the second metal wires is represented by a resistivity R2, the resistivity R1 and the resistivity R2 are the same value or a ratio of a higher resistivity among the resistivity R1 and the resistivity R2 to a lower resistivity among the resistivity R1 and the resistivity R2 is more than 1.00 and 1.40 or less.
Abstract:
Provided are a pearl culture material in which at least one selected from the group consisting of a pearl nucleus and a mantle piece is coated with a protein containing a repeating sequence of GXY triplets which may be separated by one or more amino acids, and one or more RGD motifs, and having a polydispersity of less than 20; and a coating composition including the protein.
Abstract:
The object of the invention is to provide an optical information recording medium which excels in stability e.g., for preserving the properties during a long-term storage and which enables recording using a laser having a small peak power, and a method for manufacturing such an optical information recording medium. An optical information recording medium 10 includes a recording layer 14, and intermediate layers (adhesive agent layer 15A and recording layer support layer 15B) adjacent to the recording layer 14, and the recording layer 14 includes a recording material comprising a one-photon absorption dye bound to a polymer binder (polymer compound).