Abstract:
This disclosure relates to a composition for forming a conductive pattern that enables formation of fine conductive pattern on various polymer resin products or resin layers by a simplified process, and more effectively fulfills requirements of the art such as realization of various colors and the like, and a resin structure having a conductive pattern. The composition for forming a conductive pattern comprises a polymer resin; and a non-conductive metal compound including a first metal and a second metal, having a NASICON crystal structure represented by the following Chemical Formula 1, wherein a metal nucleus including the first metal or an ion thereof is formed from the non-conductive metal compound by electromagnetic irradiation.
Abstract:
Provided are a photomask, an exposure apparatus and a method. A fine pattern having a submicrometer size can be easily formed on a cylindrical mold, and the cylindrical mold having the pattern formed therein can be easily applied to an automation process, such as a roll-to-roll process. Also, the fine pattern can be formed in a large scale having various sizes by using a mask formed of a flexible material, and patterns having different shapes can be divided or independently formed on a curved surface of the cylindrical mold so that a degree of freedom of a process can be improved.
Abstract:
Provided are a polarized light splitting element, a method of manufacturing the same, a light radiating device, a method of radiating light, and a method of manufacturing an ordered photo-alignment film. The polarized light splitting element has excellent durability with respect to UV rays and heat, and low pitch dependence of polarization characteristics, so that it is easily manufactured. In addition, the polarized light splitting element may realize a high polarization degree and extinction ratio even in a short wavelength region.