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Density functional theory as a guide for the design of pyran dyes for dye-sensitized solar cells

机译:密度泛函理论作为染料敏化太阳能电池吡喃染料设计的指导

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Using density functional theory and hybrids, we examined several derivatives of the dye 4-(dicyanomethyl-ene)-2-methyl-6-(p-dimethylaminostyryl)-4H-pyran, with the objective of identifying modifications which would improve the properties of dyes for dye-sensitized solar cells. We calculated the electronic structure of numerous derivatives at the HOMO and LUMO energy levels, with the hypothesis that directing the flow of excited electrons to the point of the dye at which the molecule attaches to T1O2 would increase the energy conversion efficiency of the cell. We also examined the UV-visible absorption spectra of the dyes, with the objective of capturing the maximum amount of solar light. By use of the derivatives we compared the use of two electron-donating groups instead of one, extension of the conjugated chain leading to the attachment point of the dye, use of oxygen versus sulfur or selenium in the dye, and the use of different electron-donating groups. We identified several promising donating groups and determined that the other modifications to the dye are likely to increase solar cell efficiency.
机译:使用密度函数理论和杂种,我们检查了染料4-(二氰基甲基-4-6-(p-二甲基氨基苯胺酰基)-4H-吡喃的几种衍生物,目的是鉴定改善性质的修饰用于染料敏化太阳能电池的染料。我们计算了在同性恋和LumO能量水平的许多衍生物的电子结构,具有指导激发电子流向染料的点的假设将增加细胞的能量转换效率。我们还检查了染料的UV可见吸收光谱,目的是捕获最大的太阳光量。通过使用衍生物,比较了两个电子捐赠组而不是一个,缀合链的延伸导致染料的附着点,在染料中使用氧气与硫或硒,以及使用不同的电子 - 分解团体。我们确定了几个有前途的捐赠组,并确定对染料的其他修改可能会增加太阳能电池效率。

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