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Raman spectroscopic study of dye adsorption on TiO2 electrodes of dye-sensitized solar cells

机译:染料敏化太阳能电池TiO2电极染料吸附的拉曼光谱研究

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The state of dye adsorption on TiO2 electrodes in dye-sensitized solar-cell (DSSC) systems is important for its power-conversion efficiency (PCE). We propose a non-destructive and quantitative method to evaluate the amount of adsorbed dye on TiO2 electrodes by using micro-Raman spectroscopy. The Raman peak intensity ratio of adsorbed dye to TiO2, I_σ/I_t. is defined as a dye adsorption parameter. Based on a comparison between I_d/I_t and the amount of dye evaluated from UV-vis absorption, the quantitativity and reproducibility of our method are verified. We investigated the change of I_d/I_t spatial distribution of TiO2 electrodes immersed in a dye solution for different time scales. The statistical analysis of I_d/I_t distribution suggests that dyes adsorbed on TiO2 electrodes with chemical coordination increase at first, and after their saturation, dye aggregations are formed over the chemisorption layer. We also describe the effect of the I_d/I_t distribution on PCE. From a comparison of PCE and I_d/I_t distribution obtained from various immersion processes, it was considered that the PCE of DSSCs can be optimized by minimizing the I_d/I_t dispersion.
机译:染料敏化太阳能电池(DSSC)系统中TiO2电极上的染料吸附状态对于其功率转换效率(PCE)是重要的。我们提出了一种非破坏性和定量方法,通过使用微拉曼光谱法评估TiO 2电极上的吸附染料的量。吸附染料的拉曼峰强度比TiO2,I_σ/ I_T。定义为染料吸附参数。基于I_D / I_T与由UV-VIS吸收评估的染料量之间的比较,验证了我们方法的定量和再现性。我们研究了浸入染料溶液中的TiO2电极的I_D / I_T空间分布的变化,以进行不同的时间尺度。 I_D / I_T分布的统计分析表明,在第一次和饱和之后,在化学吸附层上形成染料在TiO 2电极上吸附的染料,并在化学吸附层上形成染料聚集。我们还描述了I_D / I_T分布对PCE的影响。根据从各种浸没过程获得的PCE和I_D / I_T分布的比较,认为可以通过最小化I_D / I_T色散来优化DSSCS的PCE。

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