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Electrodeposited Nanoporous versus Nanoparticulate ZnO Films of Similar Roughness for Dye-Sensitized Solar Cell Applications

机译:用于染料敏化太阳能电池的粗糙度相似的电沉积纳米多孔与纳米颗粒ZnO膜

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We present a comparative study of two different ZnO porous film morphologies for dye-sensitized solar cell (DSSC) fabrications. Nanoparticulate ZnO was prepared by the doctor-blade technique starting from a paste containing ZnO nanoparticles. Nanoporous ZnO films were grown by a soft template-assisted electrochemical growth technique. The film thicknesses were adjusted at similar roughness of about 300 in order to permit a worthy comparison. The effects on the cell performances of sensitization by dyes belonging to three different Families, namely, xanthene (eosin Y) and indoline (D102. D131. D149 and D205) organic dyes as well as a ruthenium polypyridine complex (N719). have been investigated. The mesoporous electrodeposited matrix exhibits significant morphological changes upon the photoanode preparation, especially upon the dye sensitization, that yield to a dramatic change of the inner layer morphology and increase in the layer internal specific surface area. In the case of indoline dyes, better efficiencies were found with the electrodeposited ZnO porous matrixes compared to the nanoparticulate ones, in spite of significantly shorter electron lifetimes measured by impedance spectroscopy. The observation is interpreted in terms oF much shorter transfer time in the oxide in the case of the electrodeposited ZnO films. Among the tested dyes, the D149 and D205 indoline organic dyes with a strong acceptor group were Found the most efficient with the best cell over 4.6% of overall conversion efficiency.
机译:我们目前对染料敏化太阳能电池(DSSC)的两种不同的ZnO多孔膜形态进行比较研究。通过刮刀技术从含有ZnO纳米颗粒的糊料开始制备纳米颗粒ZnO。纳米多孔ZnO薄膜通过软模板辅助电化学生长技术生长。将膜厚度调整为约300的相似粗糙度,以便进行值得的比较。属于三个不同家族的染料,即x吨(曙红Y)和二氢吲哚(D102。D131。D149和D205)有机染料以及钌多吡啶配合物(N719)对敏化细胞性能的影响。已被调查。介孔电沉积基质在光阳极制备时,特别是在染料敏化时,表现出显着的形态学变化,这导致内层形态的急剧变化并增加了层的内部比表面积。在二氢吲哚染料的情况下,尽管通过阻抗谱法测得的电子寿命显着缩短,但电沉积的ZnO多孔基体却比纳米颗粒的基体具有更高的效率。在电沉积的ZnO薄膜的情况下,可以用更短的氧化物传输时间来解释该观察结果。在测试的染料中,发现具有强受体基团的D149和D205吲哚啉有机染料效率最高,单元格最佳,占总转化效率的4.6%。

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