摘要:
An apparatus (100) for measuring the transmittance of a piece of cover glass (10) for a photovoltaic cell which can measure an accurate transmittance irrespective of whether or not the cover glass (10) has a pattern and irrespective of the shape of the pattern. The apparatus (100) includes a light source part (110) disposed in front of the piece of cover glass (10). The light source part (110) directs light into the piece of cover glass (10). A detector (120) is disposed in the rear of the piece of cover glass (10), and detects light that has been directed into the piece of cover glass (10) and then has passed through the piece of cover glass (10). The detector (120) is disposed within a range where the intensity of the light that has passed through the piece of cover glass (10) is uniform.
摘要:
A photovoltaic cell substrate and a photovoltaic cell including the same are disclosed. The photovoltaic cell substrate includes a transparent substrate and a transparent conductive film formed over the transparent substrate. The transparent conductive film includes a zinc oxide thin film layer doped with a dopant, and both a (0002) growth plane and a (101̅1) growth plane are present in the zinc oxide thin film layer according to X-Ray Diffraction (XRD) data.
摘要:
A thermochromic window, the sunlight transmittance of which is adjustable depending on temperature, and a method of fabricating the same. The thermochromic window includes a substrate, a plurality of nanodots formed on the substrate, and a thermochromic thin film coating the substrate and the nanodots. The thermochromic thin film is made of a thermochromic material. The thickness of the thermochromic thin film disposed on the substrate is smaller than the thickness of the thermochromic thin film disposed on the nanodots.
摘要:
Provided are a color sense improving film and a method for manufacturing the same, and a display apparatus including the color sense improving film. The color sense improving film includes a base material layer, a high-refractive light diffusion layer including a light diffuser, a high-refractive resin layer, and a low-refractive resin layer on which an optical pattern is formed. The method for manufacturing a color sense improving film includes forming a high-refractive light diffusion layer by coating a resin comprising a diffuser on one surface of a base material layer and hardening the resin, forming a high-refractive resin layer, in which a plurality of optical patterns are intagliated, on one surface of the high-refractive light diffusion layer, and forming a low-refractive resin layer having optical patterns formed on one surface thereof by coating a low-refractive transparent resin on a surface of the high-refractive resin layer in which the optical patterns are intagliated and hardening the resin.
摘要:
An electrode structure includes a rolled graphene film which is wound about a central axis, and a nanomaterial dispersed on a surface of the rolled graphene film.
摘要:
An organic light emitting device (OLED) includes a first electrode (40) on a substrate (20), an organic light emitting layer (50) on the first electrode, a second electrode (60) on the organic light emitting layer, and an optical path difference compensation layer (30). The optical path difference compensation layer is between the substrate (20) and the first electrode (40) or on the second electrode (60). The optical path difference compensation layer includes at least one layer in which transmittance decreases as an angle (θ 1 , θ 2 ) between incident light (L 1 , L 2 ) and an incident surface of the optical path difference compensation layer (IP) increases.
摘要:
A cover substrate for a photovoltaic module and a photovoltaic module having the same, in which light energy is converted into electrical energy. The cover substrate includes a substrate (100) having a raised array pattern on a surface on which light is incident, and an anti-reflection film (200) formed on the surface on which light is incident.
摘要:
A metal oxide thin film substrate for an organic light-emitting device (OLED) which exhibits superior light extraction efficiency and can be easily fabricated at low cost and a method of fabricating the same and a method of fabricating the same. The metal oxide thin film substrate for an OLED includes a base substrate and a metal oxide thin film formed on the base substrate, the metal oxide thin film being made of a mixture of at least two metal oxides having different refractive indices.