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首页> 外文期刊>Advanced energy materials >Titanium Dioxide Mesoporous Electrodes for Solid-State Dye-Sensitized Solar Cells: Cross-Analysis of the Critical Parameters
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Titanium Dioxide Mesoporous Electrodes for Solid-State Dye-Sensitized Solar Cells: Cross-Analysis of the Critical Parameters

机译:固态染料敏化太阳能电池的二氧化钛介孔电极:关键参数的交叉分析

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摘要

We report a comparative study on the use of four different mesoporous titanium dioxide (TiO2) photo-electrodes for the fabrication of solid-state dye-sensitized solar cells (sDSSCs). The photovoltaic parameters of the device correlate with several intrinsic properties of the film, based not only on its morphological features, as commonly considered in standard characterizations, but also on the transport and the electronic properties of the photo-electrode. These properties differ significantly for TiO2 electrodes processed using different colloidal pastes, and are decisive for the photovoltaic efficiency, ranging from 3.7% up to 5.1%. In particular, the dielectric permittivity of each mesoporous layer (εeff) and the number of traps (Nt) determined by the space-charge-limited current (SCLC) theory are found to be a bottle-neck for the charge transport, greatly influencing the fill factor (FF) and open circuit voltage (Voc) of the cells. In addition, a direct correlation between TiO2 surface potential with the Voc was established. Cross-analysis of key macroscopic parameters of the films prior to integration in the devices, in particular focusing on the determination of the capacitance and surface potential shift of the TiO2 mesoporous anode, represents a straightforward yet powerful method to screen and select the most suitable TiO2 for applications in sDSSCs.
机译:我们报告比较研究使用四种不同的介孔二氧化钛(TiO2)光电极制造固态染料敏化太阳能电池(sDSSCs)。器件的光电参数不仅与膜的形貌特征有关(通常在标准表征中考虑),而且与光电电极的传输和电子性质相关,与膜的多个固有特性相关。这些性质对于使用不同胶体糊料加工的TiO2电极有显着差异,并且对光电效率起决定性作用,范围为3.7%至5.1%。特别是,发现每个介孔层的介电常数(εeff)和由空间电荷限制电流(SCLC)理论确定的陷阱数量(Nt)是电荷传输的瓶颈,极大地影响了电荷传输。电池的填充系数(FF)和开路电压(Voc)。此外,建立了TiO2表面电位与Voc之间的直接关系。在集成到设备中之前,对薄膜的关键宏观参数进行交叉分析,尤其是专注于确定TiO2中孔阳极的电容和表面电势漂移,是一种筛选但选择最合适的TiO2的简单而有效的方法用于sDSSC中的应用。

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