本論文以電化學沉積法製備氧化鋅薄膜,並應用於染料敏化太陽能電池工 作電極的製作。在三電極系統的架構下,探討電壓、電流密度、電鍍液的組成與 濃度、沉積時間,以及螯合劑添加量對氧化鋅薄膜結構的影響,並成功地在導電 玻璃(FTO)上生長具高表面積與多孔性的奈米片層,厚度約 5-6
Electrochemical deposition was used to form zinc oxide nanostructures for dye-sensitized solar cell (DSC) applications. The effects of various deposition parameters, including deposition voltage, current density, composition and concentration of electrolytes, deposition time, and concentration of chelating agents, on the growth and structures of deposited films were investigated. Nanoporous ZnO films with a thickness of ca. 5-6