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First Evidence of Electrode Reconstruction in Mesoporous NiO After Operation as Photocathode of Dye-Sensitized Solar Cells

机译:操作后,在介孔NIO中重建电极重建的第一个证据,作为染料敏化太阳能电池的光阴极

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For the first time it is shown that the NiO films operating as photocathodes in dye-sensitized solar cells (DSCs), alter their X-ray diffraction (XRD) pattern upon occurrence of the photo-electrochemical reaction of reduction. In particular, it has been observed that mesoporous NiO sensitized with Fast Green (FG) presents splitting and broadening of its characteristic XRD peaks after device operation in p-type DSC (p-DSC) and tandem DSC (t-DSC). The nature of the changes in the diffraction pattern of NiO does not vary with the magnitude of the current passing through the p-DSC and the f-DSC with NiO photo-cathodes. Such a combination of facts would indicate that the photoelectrochemical process of holes photoinjection medi- ated by the sensitizer is responsible of the structural variations in NiO photocathode. At a microscopic level, we attributed such modifications to the reconstruction of the NiO electrode following the realization of the dye-mediated process of electron transfer with lattice deformation possibly due to the inclusion of the chemisorbed sensitizer in the oxide structure. This observation opens up a completely new direction of research in the field of DSC and analogous devices as far as the analysis and the understanding of the interactions dye/semiconductor in the common operative conditions of a DSC are concerned.
机译:首次表明,在染料敏化的太阳能电池(DSC)中以光(DSC)的光(DSC)作用,在发生还原的光电化学反应后改变其X射线衍射(XRD)模式。特别是,已经观察到,在P-type DSC(P-DSC)和Tandem DSC(T-DSC)中,用快绿(FG)用快绿(FG)敏感的中孔NIO对其特征XRD峰进行了分裂和扩展。 NIO衍射模式变化的性质不会随着通过P-DSC的电流的大小而变化,而F-DSC则与NIO光电座相变。这种事实的结合将表明孔的光射剂量的光电化学过程是敏化剂所指出的,是NIO光(Nio光(Nio Postocathode)结构变化的原因。在显微镜水平上,我们将这种修饰归因于在实现染料介导的电子转移过程后NIO电极的重建,并可能是由于氧化物结构中的化学糖敏化剂纳入了晶格变形。就DSC的分析和对相互作用染料/半导体的理解而言,这种观察结果在DSC和类似设备领域打开了全新的研究方向。

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