摘要:
Disclosed herein is an electrode that includes a catalytic layer formed on a substrate coated with a conductive material, wherein the catalytic layer includes vertically aligned carbon nanotubes. A method of manufacturing the electrode and a solar cell comprising the electrode are also described. The electrode has increased surface roughness and a shortened charge transport pathway and, therefore, reduced charge transport resistance. Thus, when the electrode is used in a solar cell, it can improve the efficiency of the solar cell.
摘要:
Disclosed herein are a metal oxide paste composition comprising a carboxylic ester dispersant and/or a phosphate dispersant, and a method for manufacturing a semiconductor electrode for solar cells using the same. The disclosed metal oxide paste composition improves the dispersibility of metal oxide nanoparticles. Thus, if it is used to manufacture a semiconductor electrode for solar cells, it will allow the increased adsorption of a dye, thus improving the photoelectric efficiency of the resulting solar cell.
摘要:
A semiconductor electrode, a fabrication method thereof and a solar cell including the semiconductor electrode each include a metal oxide layer of metal oxide nanoparticles having dye molecules adsorbed thereon. In the semiconductor electrode of the present invention, the surface of the metal oxide layer is treated with an aromatic or heteroaromatic organic material having an electron-donating group. Thus, since the semiconductor electrode can provide an effect of improving photoelectric efficiency by virtue of an increase in short-circuit photocurrent density and open-circuit voltage, it can be applied to a high efficiency solar cell.
摘要:
Disclosed herein are low molecular weight conjugated nitrogen compounds having linear conjugated chains, and devices fabricated using the conjugated nitrogen compounds as organic semiconductor materials, hole conducting materials, or light-emitting materials. The conjugated nitrogen compounds can be spin-coated at room temperature, are stable, and has superior electrical conductivity.
摘要:
Disclosed herein are a novel nitrogen semiconductor compound simultaneously including groups with different electrical properties and a device fabricated using the nitrogen semiconductor compound as an organic semiconductor material or a hole conducting material. The nitrogen semiconductor compound can be spin-coated at room temperature when applied to the fabrication of the device, and has superior electrical conductivity and photovoltaic properties.
摘要:
The present invention relates to a refrigerator. In the present invention, storage spaces 59, each of which is formed in a hexahedral shape with a front face being opened, are formed in an inner case 55 that defines the interior of the refrigerator. A tray 61 is installed in each of the storage spaces 59 to be drawn in a drawer-like fashion. An evaporator 65 is attached to a reverse side of the inner case 55 to cover rear portions of upper and side surfaces of the inner case which are spaced apart by a predetermined distance rearward from the open front face of the storage space 59. In addition, a fan assembly 69 for allowing the air in the storage space 59 to circulate is installed on a front portion on the ceiling of the storage space 59. According to the present invention so configured, by relatively reducing the temperature of the front portion of the storage space that first comes into contact with the external air when the tray is drawn out, it is possible to minimize a phenomenon that a layer of frost is formed on the surface of the storage space.
摘要:
Disclosed is a cathode ray tube, comprising a panel of which outer surface is substantially flat and inner surface has a designated radius of curvature, a funnel connected to the panel, an electron gun housed in the funnel, emitting electron beams, a deflection yoke for deflecting the electron beams, and a shadow mask for discriminating the electron beams in colors, wherein a ratio (%) of a corner portion of the panel to a thickness at a central portion of the panel is in a range of 150%˜230%, and design sizes of the panel satisfy a relation of CFT × USD IBRD × 100 ≤ 1100 mm (wherein, CFT denotes a thickness at the central portion of the panel, USD denotes a diagonal length of an effective surface of the panel, and IBRD denotes 2× a distance from the center of the panel to the center of a radius of curvature from the corner portion of the panel).