Abstract:
본 발명은 고온에서 소성한 탄소기반 재료와 백금 나노입자를 포함한 다공질막을 포함하여, 박막에서 보다 높은 전도성을 유지하고 전해질의 이동이 원활한 염료감응 태양전지용 상대전극 및 이의 제조방법과, 이를 이용한 광전 효율이 향상된 염료감응 태양전지에 관한 것이다.
Abstract:
PURPOSE: A photoelectrode for a dye-sensitized solar cell, a manufacturing method thereof, and the dye-sensitized solar cell using the same are provided to improve durability, mechanical intensity, and photoelectric efficiency by using the photoelectrode as a semiconductor electrode. CONSTITUTION: A conductive substrate(103) includes a substrate(101) and a conductive film(102). The conductive substrate includes a glass substrate coated with a conductive film, a flexible plastic substrate, or a metal substrate. A porous film(107) is formed on the conductive substrate. A porosity of the porous film is 30 to 80 %. A thickness of the porous film is 1 to 100 um. The porous film includes a metal oxide nanoparticle layer absorbing photosensitive materials and a polymer layer formed on the surface of the metal oxide nanoparticle layer.
Abstract:
PURPOSE: An environment-friendly polymer gel electrolyte composition facilitates the injection of electrolyte, reduces leakage and volatilization, thereby providing a dye-sensitized solar cell with excellent long term stability and high efficiency. CONSTITUTION: A polymer gel electrolyte composition for a dye-sensitized solar cell comprises a polysaccharide-based polymer aqueous solution and a liquid electrolyte mixed of an oxidation-reduction derivative and an organic solvent. A manufacturing method of a polymer gel electrolyte composition comprises a step of manufacturing a polymer gel aqueous solution by dispersing polysaccharide-based polymer into a solvent; a step of manufacturing a liquid electrolyte by mixing an oxidation-reduction derivative and an organic solvent; and a step of mixing the polysaccharide-based polymer gel aqueous solution and liquid electrolyte.