标题: | 二氧化钛薄膜孔洞大小控制及其对染料敏化太阳能电池之影响 Studies on the Control of Pore Sizes in TiO2 Thin Films and Effects on DSSC Performance |
作者: | 田丞芳 Tien, Cheng-Fang 吕志鹏 Leu, Jihperng 材料科学与工程学系 |
关键字: | 染料敏化太阳能电池;孔洞形貌;等温吸脱附;电化学阻抗;胶态电解质;DSSC;Pore size;BET;EIS;Gel electrolyte |
公开日期: | 2012 |
摘要: | 染料敏化太阳能电池(Dye-sensitized solar cell, DSSC)是目前极具发展潜力的新一代有机太阳能电池。其中光电极之孔洞形貌是影响效率的主因之一。因此孔洞大小、比表面积,以及孔隙率,皆是优化染料敏化太阳能电池效率的研究重点。 本论文利用聚乙二醇高分子团聚的特性,在制作二氧化钛光电极时,以100oC的温度对试片进行热处理,此”团聚处理”可以使得聚乙二醇由界面活性剂的角色转化为类似起孔洞剂的效果,而经过高温烧除之后得到比较大孔洞的二氧化钛薄膜。藉由控制团聚处理时间,可以得到一系列孔洞大小,但表面积与孔隙率极相似的光电极。进而探讨二氧化钛光电极孔洞之大小,在液态与胶态电解质下,对效率的影响。 由光电转换效率及电化学阻抗之检测,发现较大的孔洞可使电解质在光电极中扩散较好而让光电流提升导致更佳的光电转换效率。最适当的孔洞大小则视电解质成分等因素而定。本实验中利用液态电解质在其最适当之孔洞大小下,效率可提升8.8%达到6.68%的光电转换效率;而胶态电解质更可以提升13.6%,而使效率达到7.43%。 Dye-sensitized solar cell (DSSC) is a new generation organic solar cell which has tremendous market potential due to its low cost, flexibility as a device, and indoor usage etc. The pore morphology of TiO2 film has been recognized as one of the major factors influencing the conversion efficiency of DSSC. As a result, the pore properties such as surface area, porosity, and pore size/distribution have been fervently studied in order to improve the conversion efficiency of DSSC. In this study, we have developed an aggregation process of polyethylene glycol (PEG) at 100 oC isothermally using different treatment time to modulate the pore size of TiO2 films, while keeping their surface area and porosity about the same. This process transforms the role of PEG from a surfactant to a porogen to form larger pore after long aggregation time. The effect of pore size /distribution of TiO2 films on DSSC performance was further examined using liquid electrolyte (LiI) and gel electrolyte (AEII) under 30w% PEG loading. Based on the I-V characteristic and electrochemical impedance spectroscopy analysis,larger pore can improve redox couple diffusion in TiO2 porous electrode to raise photocurrent, resulting in enhanced conversion efficiency. Under each optimized pore size, the liquid electrolyte exhibits η=6.68% with 8.8% improvement (over the film without aggregation process) and the gel electrolyte shows η=7.43% with 13.6% enhancement, respectively. |
URI: | http://140.113.39.130/cdrfb3/record/nctu/#GT079918539 http://hdl.handle.net/11536/49634 |
显示于类别: | Thesis |