Abstract:
An advertisement print method includes an advertisement information obtaining step of obtaining, by an advertisement processing apparatus, advertisement information input by an input apparatus, a transaction data selection step of selecting, by the advertisement processing apparatus, N transaction data associated with the advertisement information from a plurality of transaction data stored in an e-commerce database based on the advertisement information and orderer information and receiver information stored in the e-commerce database, N being an integer not less than 1, and a print step of printing, by a print apparatus, an advertisement based on the advertisement information on packing materials of N products specified by the N selected transaction data.
Abstract:
To provide a light-emitting element which emits light in a near-infrared range and has high efficiency and long life, and a light-emitting device, an authentication device, and an electronic apparatus, each of which includes this light-emitting element.A light-emitting element 1 of the invention includes an anode 3, a cathode 8, a light-emitting layer 5 which is provided between the anode 3 and the cathode 8 and emits light in a wavelength range of 700 nm or more by applying a current between the anode 3 and the cathode 8, and an electron transport layer 6 which is provided between the light-emitting layer 5 and the cathode 8, and includes a first electron transport layer 6b located on the cathode 8 side and a second electron transport layer 6a located on the light-emitting layer 5 side, wherein the first electron transport layer 6b contains a first anthracene-based compound, which has an anthracene skeleton and a nitrogen-containing heterocyclic skeleton, and has an average thickness of less than 8 nm, and the second electron transport layer 6a contains a second anthracene-based compound, which has an anthracene skeleton but does not have a heterocyclic skeleton.
Abstract:
A detection method using a detection element, including a first electrode and a second electrode, in which a detection layer containing an enzyme is provided in the first electrode and the second electrode, includes a first step of measuring an electric current generated by decomposition of hydrogen peroxide generated from glucose in the detection layer of the first electrode as an electric current value between the first electrode and the second electrode, and a second step of measuring an electric current generated by decomposition of hydrogen peroxide generated from glucose in the detection layer of the second electrode as an electric current value between the first electrode and the second electrode.
Abstract:
A light-emitting element includes an anode, a cathode, and a light emission layer. The light emission layer is arranged between the anode and the cathode and configured to emit light by energization between the anode and the cathode. The light emission layer includes a compound represented by a general formula NIR-D as a light emission material and a compound represented by a formula IRH-1 as a host material of the light emission material. The general formula NIR-D is in which each R independently indicates group comprising a phenyl group, a thiophenyl group, a furyl group, or at least one species of derivatives thereof. The formula IRH-1 is in which n indicates a natural number 1 to 12, and each R independently indicates a hydrogen atom, an alkyl group, an optionally substituted aryl group, or an arylamino group.
Abstract:
A buffer material is a material including a buffer sheet that contains cellulose fibers and a binding material binding the cellulose fibers and has a sheet shape, and a nonwoven fabric sheet that is provided on at least one surface side of the buffer sheet and is formed of nonwoven fabric. Further, a thickness T2 of the nonwoven fabric sheet is 5% or greater and 90% or less of a thickness Tl of the buffer sheet. Further, a basis weight of fibers in the nonwoven fabric sheet is less than a basis weight of the cellulose fibers in the buffer sheet.
Abstract:
A light emitting device includes a substrate, and a laminated structure provided on the substrate, wherein the laminated structure has a plurality of columnar portions, the columnar portion contains a material having a wurtzite-type crystal structure, in a plan view as seen from a layered direction of the laminated structure, the plurality of columnar portions are arranged in a square lattice form or rectangular lattice form, a line passing through centers of the adjacent columnar portions is inclined relative to m-planes of the columnar portions located between the centers of the adjacent columnar portions, and vertices of the adjacent columnar portions are not placed on the line.
Abstract:
A biological information acquisition device includes: a light emitting unit which casts light on a living body; a plurality of light receiving units which receives the light transmitted through the living body; and a control unit which controls the light emitting unit and the light receiving units. The control unit causes the light emitting unit to emit light as a measurement light emitting unit, causes a plurality of measurement light receiving units spaced apart from the measurement light emitting unit by a first distance, of the plurality of light receiving units, to receive the light cast from measurement light emitting unit and thus acquires a plurality of light receiving results, and acquires biological information using a first light receiving result with a highest light reception intensity and a second light receiving result with a lowest light reception intensity, of the plurality of light receiving results.
Abstract:
An information measuring device includes a detection film placed on the surface of a first needle section, an electrically conductive second needle section, and an electric current detection circuit which detects an electric current between the detection film and the second needle section. The major axis of the first needle section is 0.1 mm or more and 0.3 mm or less.
Abstract:
An imaging apparatus includes a light emitting section that emits light toward a subject, and a light receiving element that receives incident light from the subject side. The light emitting section is configured so that the light emitted from the light emitting section along an illumination direction that inclines with respect to a reference direction at an angle greater than 0° and equal to or smaller than 45° has a larger irradiation strength than the light emitted from the light emitting section along the reference direction, the reference direction being a direction perpendicular to a plane that faces the subject.
Abstract:
The thiadiazole represented by formula (2) or (4), when used as a light-emitting material in a light-emitting element, allows the light-emitting element to emit near-infrared light: In formulae (2) and (4), each R independently represents a hydrogen atom, an alkyl group, or a substituted or unsubstituted aryl group. There may be a ring formed by a carbon linkage between two adjacent R's.