标题: | 吲哚啉染料运用在多种后处理二氧化钛奈米管薄膜阵列的染料敏化太阳能电池元件 Apply indoline Dyes on Multiply Treated TiO2 Nanotube-array for Dye-sensitized Solar Cell |
作者: | 徐兆治 简昭欣 电子研究所 |
关键字: | 吲哚啉;染料敏化;indoline;DSSC |
公开日期: | 2012 |
摘要: | 本论文研究目的为研究并提升吲哚啉染料于二氧化钛奈米管吸咐性质并应用于染料敏化太阳能电池以提高能源转换效率。吲哚啉染料分子为有机染料,其相较于金属染料具有较便宜、高消光系数、易调整吸收光谱等优点。实验中我们发现溶解于第三丁醇及甲醇中之吲哚啉染料在二氧化钛奈米管上具有较佳的吸附性质,对吲哚啉染料敏化太阳能电池较佳的光电极长度约为18.5μm。针对二氧化钛奈米管做各种后处理以增加吲哚啉分子在奈米管上的吸附量,经过TiCl4处理的二氧化钛奈米管具有最高的吸附量,而经过盐酸处理后将第二次烧结温度500℃时经水热处理后的二氧化钛奈米管具有最高的效率并且吸附量也有提升,二氧化钛奈米管分别经过水热处理、盐酸处理的吸附量也都有提升。经过X光绕射图谱判定在锐钛矿上的结晶强度各种处理都有加强的结果,二氧化钛奈米管光电极经过各种处理后与吲哚啉分子间的键结方式并未改变,经由电化学频谱分析后所得结果可以更加清楚瞭解到除了吸附量上升加强效率外还有其他加强的因素。将吲哚啉染料分子运用到可挠式结构上,可以量测到吲哚啉分子在二氧化钛上的吸收光谱,会有红移以及蓝移现象,使得吸收光谱宽化,有利于吸收光子。在可挠式结构上效率较差主要是由于填充因子减少许多,但是可以利用经过水热后的二氧化钛奈米管的亲水性较佳,让PDMS可有效的渗透入奈米管的内部作为阻挡层,减低ITO与电解液间的漏电。 In this thesis, we study and improve the adsorption of an indoline dye, D149, on the titanium dioxide nanotubes for application in dye-sensitized solar cells to improve the energy conversion efficiency. D149 is an organic dye, which is cheaper than conventional ruthenium dyes, and it has higher extinction coefficient. In our experiment, we found the dye loading on the TiO2 nanotubes increased when D149 was dissolved in tert-butanol with methanol. The length of the titanium dioxide nanotubes of approximately 18.5 μm is prefered for D149-sensitized solar cell. We applied different post-processing nanotubes to increase the amount of D149 adsorbed on the nanotubes. TiCl4 treatment resulted into the highest amount of adsorption, and treatment of HCl trimming with hydrothermal process for titanium dioxide nanotubes showed the most efficient charge collection. According to the infrared spectroscopy, the post treatments did not change the chemical bonding between the indoline dye and the nanotubes. Based on electrochemical impedance analysis, the performance of the D149-sensitized nanotube solar cells was known to be improved by the post treatment due to the increased dye loading and the enhanced charge collection efficiency of the nanotubes. The absorption spectrum of D149 adsorbed on titania nanotubes was directly measured by transferring the nanotubes to a transparent substrate by poly-dimethylsilane (PDMS). The spectrum of D149 showed simultaneous red shift and blue shift when adsorbed on the nanotubes, which broaden the absorption spectrum. The red shift of D149 adsorbed on the nanotubes was observed to be stronger than the red shift of D149 adsorbed on nanopartibles. This could be caused by the more regular arrangement of D149 adsorbed on the sidewall of the nanotubes. As a result, the red shift of the D149 was influenced by certain post treatment of the nanotubes because of the roughened nanotube surface. |
URI: | http://140.113.39.130/cdrfb3/record/nctu/#GT079911554 http://hdl.handle.net/11536/49100 |
显示于类别: | Thesis |