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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Prolonged Light and Thermal Stress Effects on Industrial Dye-Sensitized Solar Cells: A Micro-Raman Investigation on the Long-Term Stability of Aged Cells
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Prolonged Light and Thermal Stress Effects on Industrial Dye-Sensitized Solar Cells: A Micro-Raman Investigation on the Long-Term Stability of Aged Cells

机译:延长的光和热应力对工业染料敏化太阳能电池的影响:老化电池的长期稳定性的微观拉曼研究

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摘要

Micro-Raman spectroscopy is applied to investigate the long-term stability of industrial dye-sensitized solar cells under prolonged light soaking and thermal stress following continuous illumination over 6450 h at 55-60 °C. The Raman spectral characteristics of the individual cell components have been investigated using two excitation wavelengths in the visible and near-infrared range allowing us to assess the microstructure of the TiO2/conducting glass photoelectrode, the chemical bonding of the hydrophobic Ru(II)-polypyridyl dye complex on the mesoporous TiO2 film, and the electrolyte composition. Comparative ex situ resonance Raman measurements on fresh and aged cells indicate minor differences in the vibrational characteristics of the triiodide, dye molecules, and the triiodide/dye charge transfer adduct at the electrode/electrolyte interface upon aging, confirming the absence of any distinct chemical modification that could create instability. In situ Raman experiments implemented via the application of a polarization bias reveal a less pronounced potential dependence of both the electrolyte and the dye Raman response for the aged cells. These features together with the intensity reduction and broadening of the anatase Raman modes imply that the chemical stability of the cell interfaces is accompanied by a modification of the interfacial electric field on the TiO2/dye/electrolyte junction after long-term light and thermal stress.
机译:显微拉曼光谱法用于研究工业染料敏化太阳能电池在55-60°C下连续照明6450小时后在长时间的光吸收和热应力下的长期稳定性。使用可见光和近红外范围内的两个激发波长研究了单个电池组件的拉曼光谱特性,这使我们能够评估TiO2 /导电玻璃光电极的微观结构,疏水性Ru(II)-聚吡啶基的化学键合介孔TiO2膜上的染料配合物和电解质组成。在新鲜和老化的电池上进行的比较异位共振拉曼测量表明,老化后电极/电解质界面上的三碘化物,染料分子和三碘化物/染料电荷转移加合物的振动特性存在细微差异,从而确认没有任何明显的化学修饰可能会造成不稳定。通过施加极化偏压进行的原位拉曼实验显示,老化细胞的电解质和染料拉曼响应的电位依赖性都不太明显。这些特征以及锐钛矿拉曼模式的强度降低和加宽表明,在长期的光和热应力之后,细胞界面的化学稳定性伴随着TiO2 /染料/电解质结上的界面电场的改变。

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