摘要:
Atransparentelectroconductivesubstrateforasolar cell, comprising: a transparent supporting substrate; a transparent electroconductive layer; and a cured resin layer placed between the transparent supporting substrate and the transparent electroconductive layer, wherein concavities and convexities are formed on a surface of the cured resin layer, the surface facing the transparent electroconductive layer, and when a Fourier-transformed image is obtained by performing two-dimensional fast Fourier transform processing on a concavity and convexity analysis image obtained by analyzing a shape of the concavities and convexities by use of an atomic force microscope, the Fourier-transformed image shows a circular or annular pattern substantially centered at an origin at which an absolute value of wavenumber is 0 µm -1 , and the circular or annular pattern is present within a region where an absolute value of wavenumber is within a range from 0.5 to 10 µm -1 .
摘要:
A mold for nanoimprint including a liquid-crystalline polysilane and having a raised and recessed surface formed by the formation of a smectic phase due to the orientation of the liquid-crystalline polysilane.
摘要:
[Problem] Provided is a film for a transparent screen which can clearly display merchandise information, advertisement, or the like on a transparent partition or the like by projection without compromising the transmission visibility. [Solving means] A film for a transparent screen according to the present invention includes: a resin layer; and inorganic particles at least a portion of which is contained in an aggregated state in the resin layer, wherein primary particles of the inorganic particles have a median diameter of 0.1 to 50 nm and a maximum particle size of 10 to 500 nm, and the content of the inorganic particles is 0.015 to 1.2% by mass with respect to the resin.
摘要:
An organic EL element comprising: a transparent supporting substrate; a diffraction grating which comprises a concavity and convexity layer having first concavities and convexities formed on a surface thereof and which is disposed on the transparent supporting substrate; and a transparent electrode, an organic layer, and a metal electrode which are stacked in this order on the diffraction grating and formed into such shapes that a shape of the first concavities and convexities formed on the surface of the diffraction grating is maintained, the organic layer comprising at least a light emitting layer, wherein the organic EL element satisfies the following conditions (A) to (C): [Condition (A)] when a Fourier-transformed image is obtained by performing two-dimensional fast Fourier transform processing on a concavity and convexity analysis image obtained by analyzing the shape of the first concavities and convexities by use of an atomic force microscope, the Fourier-transformed image shows a circular or annular pattern substantially centered at an origin at which an absolute value of wavenumber is 0 µm -1 , and the circular or annular pattern is present within a region where an absolute value of wavenumber is within a range of 10 µm -1 or less, [Condition (B)] standard deviations of depth distributions of the first concavities and convexities and second concavities and convexities are each 15 to 100 nm, the second concavities and convexities being formed on a surface, on a side facing to the organic layer, of the metal electrode, each of the standard deviations being determined on the basis of a concavity and convexity analysis image obtained by analyzing a shape of the corresponding concavities and convexities by use of an atomic force microscope, and [Condition (C)] a ratio of a change in the standard deviation of the depth distribution of the second concavities and convexities relative to the standard deviation of the depth distribution of the first concavities and convexities is +15% to -15%.