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Effect of Particle Size in Aggregates of ZnO-Aggregate-Based Dye-Sensitized Solar Cells

机译:粒径对ZnO-Ag基染料敏化太阳能电池聚集体的影响

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摘要

Effect of particle size in aggregates on ZnO-aggregate-based dye-sensitized solar cells is investigated. A two-step hydrothermal method is developed for preparing submicrometer ZnO aggregates with different crystal sizes via controlling regrowth temperature. Three groups of ZnO-aggregate-based dye-sensitized solar cells with the different crystal sizes in the aggregates are fabricated for comparison of the photovoltaic properties. The results indicate that the cell made of crystal size of 25-30 nm has the highest light-to-electricity conversion efficiency of 4.54% for the dye-sensitized solar cells. According to the analysis of absorption spectra, dark current curves, photoelectron decay and electrochemical impedance spectra, we find that the aggregates with smaller crystal size have higher capability of dye adsorption, while the aggregates with larger crystal size have faster electron diffusion, and less recombination. Therefore, optimal crystal size in the aggregates for photoanode leads to balance these parameters to get higher light-to-electricity conversion efficiency. This investigation is important to the improvement of conversion efficiency for dye-sensitized solar cells.
机译:研究了聚集体中粒径对基于ZnO聚集体的染料敏化太阳能电池的影响。开发了一种两步水热法,通过控制再生温度来制备具有不同晶体尺寸的亚微米级ZnO聚集体。制造三组具有不同晶体尺寸的ZnO聚集体型染料敏化太阳能电池,用于比较光伏性能。结果表明,对于染料敏化太阳能电池,晶体尺寸为25-30 nm的电池具有最高的光电转换效率,为4.54%。通过对吸收光谱,暗电流曲线,光电子衰减和电化学阻抗谱的分析,我们发现具有较小晶体尺寸的聚集体具有较高的染料吸附能力,而具有较大晶体尺寸的聚集体具有更快的电子扩散和较少的重组。 。因此,用于光阳极的聚集体中的最佳晶体尺寸导致这些参数之间的平衡,从而获得更高的光电转换效率。这项研究对于提高染料敏化太阳能电池的转换效率非常重要。

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