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Parameter Study on UV-induced Degradation of Dye-sensitized Solar Cells

机译:紫外线诱导染料敏化太阳能电池降解的参数研究

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The present work investigates the UV stability of the dye-sensitized solar cell (DSC) by parametrical investigation of the material influence on UV stability. UV illumination has been observed to cause degradation by slow photocatalysis in the DSC. Photooxidized impurities represent an unwanted side reaction with the redox pair of the electrolyte as the released electron will deplete the triiodide concentration. A study on the DSC cell was carried out with intermediate electrical characterization by cyclic voltammetry (CV) and electrical impedance spectroscopy (EIS) to map the influence of UV illumination as a function of the H_2O concentration in the electrolyte, the plate distance and the triiodide concentration. The results show that the H_2O content has a detrimental influence on the DSC stability during UV illumination. A higher concentration of triiodide can buffer the reaction with impurities, so that a longer-term stability is achieved. A recovery of triiodide in UV aged cells with either no remaining triiodide or with such a low concentration that the cell current has been diffusion-limited, was seen during CV to -0.75 V under illumination. The reappearance of triiodide was accompanied with a production of hydrogen bubbles, which was related to the H_2O content in the electrolyte and the exposure to UV. Our approach can be used to test the purity and the UV stability of various electrolytes.
机译:本作者通过参数研究对紫外线稳定性的材料影响来研究染料敏化太阳能电池(DSC)的UV稳定性。已经观察到紫外线照明以通过DSC的慢光催化引起降解。光氧化杂质代表与氧化还原对电解质的不需要的副反应,因为释放的电子将耗尽三碘化物浓度。通过环状伏安法(CV)和电阻抗光谱(EIS)对DSC电池进行研究,以将UV照射的影响作为电解质中的H_2O浓度,板距离和三碘化物的函数映射专注。结果表明,H_2O含量对紫外线照明期间对DSC稳定性的有害影响。较高浓度的三碘化物可以缓冲与杂质的反应,从而实现长期稳定性。在照明期间,在CV至-0.75V期间,在照明期间,在CV至-0.75V期间观察到紫外老年细胞中的三碘细胞中的三碘化物或具有这种低浓度的低浓度。三碘化物的重新突出伴随着产生的氢气泡,与电解质中的H_2O含量有关和暴露于UV。我们的方法可用于测试各种电解质的纯度和紫外线稳定性。

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