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Triarylamine-functionalized Ruthenium Dyes for Efficient Dye-sensitized Solar Cells

机译:三芳基胺官能化钌染料用于高效染料敏化太阳能电池

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Triarylamine-functionalized ruthenium dyes, J5, J6, J7, and J9, were designed and synthesized as a dye-sensitizer for novel efficient dye-sensitized solar cells. DFT/TDDFT calculations performed on the four dyes gave useful information of their structural, electronic, and optical properties. These results indicated that the triarylamine ligand acts as an electron donor in a manner similar to thiocyana to ligands and Ru metal, and the TDDFT calculations predicted that the absorption in the visible region originates from electron transfer from the electron donor groups to the anchoring ligand dcbpy, through which excited electrons are directly transferred to TiO{sub}2 Under standard global AM 1.5 solar conditions, the J5, J6, J7, and J9-sensitized solar cells demonstrated overall conversion efficiencies of 5.8, 7.9, 7.8, and 7.1%, respectively. The higher efficiencies of the J6, J7, and J9 dyes compared to that of J5 are mainly explained in terms of the substituted methoxy groups providing directionality in the excited state.
机译:三芳基胺官能化的钌染料,J5,J6,J7和J9设计和合成为新型高效染料敏化太阳能电池的染料敏化剂。在四个染料上执行的DFT / TDDFT计算给出了它们的结构,电子和光学性质的有用信息。这些结果表明,三芳基胺配体以与硫氰烷类似于配体和RU金属的方式起作用,并且TDDFT计算预测,可见区域中的吸收源自来自电子供体组的电子转移到锚定配体DCBPY在标准全球AM 1.5太阳能条件下,兴奋电子直接转移到TiO {Sub} 2,J5,J6,J7和J9敏化太阳能电池显示为5.8,7.9,7.8和7.1%的总转化效率,分别。与J5的效率相比,J6,J7和J9染料的效率主要在于在激发态中提供方向性的取代甲氧基方面解释。

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