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Structure/function Relationships In Dyes For Solar Energy Conversion: A Two-atom Change In Dye Structure And The Mechanism For Its Effect On Cell Voltage

机译:太阳能转化染料中的结构/功能关系:染料结构中的两个原子变化及其对电池电压的影响机理

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摘要

Recombination between injected electrons and iodine limits the photovoltage in dye-sensitized solar cells (DSSCs). We have recently suggested that many new dye molecules, intended to improve DSSCs, can accelerate this reaction, negating the expected improvement (J. Am. Chem. Soc. 2008, 130, 2907). Here we study two dyes with only a two-atom change in the structure, yet which give different V_(oc)s. Using a range of measurements we show conclusively that the change in V_(oc) is due solely to the increase in the recombination rate. From the structure of the dyes, and literature values for iodine binding of similar compounds, we find that it is very likely that the change in V_(oc) is due solely to the difference in iodine binding at the site of the two-atom change. Using the large amount of literature on iodine complexation, we suggest structures for dyes that might show improved V_(oc).
机译:注入的电子和碘之间的重组限制了染料敏化太阳能电池(DSSC)中的光电压。我们最近已经提出,许多旨在改善DSSC的新染料分子可以加速该反应,而无法达到预期的改善效果(J. Am。Chem。Soc。2008,130,2907)。在这里,我们研究了两种在结构上仅具有两个原子变化的染料,但它们给出了不同的V_(oc)s。通过一系列测量,我们可以得出结论,V_(oc)的变化仅归因于重组率的提高。从染料的结构以及类似化合物的碘结合的文献资料,我们发现V_(oc)的变化很可能仅是由于两个原子变化位点处碘结合的差异所致。使用有关碘络合的大量文献,我们建议可能显示出改善的V_(oc)的染料结构。

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