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Decoupling Crystallinity and Size of TiO2 Nanoparticles of TiO2: Application in Large Area Dye-Sensitized Solar Cells

机译:TiO2 TiO2纳米粒子的去耦结晶度和尺寸:在大面积染料敏化太阳能电池中的应用

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Dye-sensitized solar cells (DSSCs) have attracted great attention in recent years as a potential alternative to conventional silicon solar cells. However, a lot of current research is still focusing on enhancing their efficiency through the individual improvement of the DSSCs components, as well as their integration. Among these components, mesoporous TiO_2 plays an important role in the cell photoanodc. Achieving well-crystallized small nanoparticles usually requires a room temperature synthesis, giving very small crystallites (4-10 nm) of TiO_2 anatase. As as-synthesized materials contain hydration water, a major drawback in DSSCs, we report how dehydration and crystallinity can be improved by annealing at a moderate temperature, without any sintering or significant particle coarsening. We report in this study a comprehensive study of the cell assembling, and its efficiency, characterized under AM 1.5 illumination with 100 mw/cm~2 light intensity.
机译:染料敏化太阳能电池(DSSCs)近年来引起了常规硅太阳能电池的潜在替代品的极大关注。然而,许多目前的研究仍然集中在通过DSSCS组件的个人改进以及它们的集成来提高他们的效率。在这些组分中,中孔TiO_2在细胞Photoanodc中起重要作用。实现良好结晶的小纳米颗粒通常需要室温合成,给出非常小的微晶(4-10nm)的TiO_2锐钛矿。作为合成材料含有水合水,DSSC的主要缺点,我们报告了如何通过在中等温度下退火来提高脱水和结晶度,而没有任何烧结或显着的颗粒粗化。我们在本研究中报告了对细胞组装的综合研究及其效率,以100mW / cm〜2光强度为35次照明。

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