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Study the effect of TiO2 annealing and TiCl4 treatment on the performance of dye-sensitized solar cells

机译:研究TiO2退火和TiCl4处理对染料敏化太阳能电池性能的影响

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摘要

The structure and quality of the TiO2 is crucial for achieving high efficiency in dye-sensitized solar cells (DSCs). In this work we have studied the effect of annealing temperature, TiCl4 concentration/ treatment time and the number of the TiO2 layers on the performance of a DSC device. It is found that increasing the annealing temperature and treatment time with application of diluted TiCl4 increased the efficiency. These items along with including a bi-layer semiconductor led to a 30% performance increase in comparison to the original solar cell just by considering the best concentration and time product for TiCl4 treatment step. The enhancement in the performance is likely due to high porosity of the semiconductor layer. Also, the lessened TiCl4 concentration decreases the harmful effects of the harsh solution but still allows for band edge improvement. Lastly, the bi-layer consisted of transparent and opaque TiO2 paste. The first consist of 15–20nm particles and the latter comprises of ∼100 nm particles. Each contributes to enhancement, as the dye and sunlight have greater absorption and scattering capabilities. Currently in progress is the synthesis and fabrication of new dyes, for compatibility efforts with the semiconductor.
机译:TiO2的结构和质量对于在染料敏化太阳能电池(DSC)中实现高效率至关重要。在这项工作中,我们研究了退火温度,TiCl4浓度/处理时间以及TiO2层数对DSC器件性能的影响。发现通过使用稀释的TiCl 4来提高退火温度和处理时间可以提高效率。仅考虑TiCl4处理步骤的最佳浓度和时间乘积,这些项目以及包括双层半导体的性能就比原始太阳能电池提高了30%。性能的提高很可能归因于半导体层的高孔隙率。同样,降低的TiCl4浓度可降低苛刻溶液的有害影响,但仍可以改善能带边缘。最后,该双层由透明和不透明的TiO2糊剂组成。前者由15–20nm的粒子组成,后者由〜100 nm的粒子组成。每种都有助于增强,因为染料和阳光具有更大的吸收和散射能力。为了与半导体的相容性努力,目前正在进行合成和制造新染料的工作。

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