基于氮掺杂TiO2原位敏化的染料敏化太阳能电池

K. Cahyorini, K. Indriana, Narsito
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引用次数: 1

摘要

染料敏化太阳能电池(DSSCs)是一种极具潜力的太阳能和光伏发电技术。它的光收集和光电流的产生高度依赖于纳米结构半导体薄膜和染料吸附方式。采用含胺基表面活性剂一步模板溶胶凝胶法制备了具有介孔结构的n掺杂TiO2作为半导体材料。采用含羧基锚定基团的多吡啶钌配合物作为染料增敏剂。染料的原位、分步、直接吸附在n掺杂TiO2薄膜表面。用FTIR分光光度计研究了Ru配合物与n掺杂TiO2表面的相互作用。结果表明,钌配合物在n掺杂TiO2薄膜上的配位主要是通过异位键(即酯类键)的贡献,部分是通过双齿键的贡献。利用吸收光谱、IPCE和I-V曲线研究了DSSCs的原位吸附效率,获得了填充系数(ff)为64%的IPCE和总DSSCs(77)效率6.5%的结果。
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Dye-sensitized solar cells based on in situ sensitized of nitrogen doped TiO2
Dye-sensitized solar cells (DSSCs) are being a potential technology for application in solar energy and photovoltaic processes. Its light harvesting and photocurrent generation are highly dependent on the nanostructured semiconductor film and the mode of dye adsorption. The N-doped TiO2 with mesoporous structure, which synthesized through one step templating sol gel method using amine group containing surfactant, was used as semiconductor material. The ruthenium polypirydine complex that contain carboxylic anchoring group was used as dye sensitizer. The dye adsorption process has been performed in situ, stepwise, and directly on the surface of the N-doped TiO2 film. FTIR spectrophotometer is used to study the surface interactions of Ru complex with N-doped TiO2 surface. The result showed that the coordination of Ru-complex on N-doped TiO2 film occurs mainly by the contribution of unidentate (i.e., ester-like linkage) and partially by bidentate linkage. The absorption spectrum, IPCE and I-V curve were used to study the efficiency of in situ adsorption process in DSSCs, providing fill factor (ff) 64 % IPCE and overall DSSCs (77) efficiency 6.5%.
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