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A New Heteroleptic Ruthenium Sensitizer for Transparent Dye-Sensitized Solar Cells

机译:一种用于透明染料敏化太阳能电池的新型多杀菌剂钌敏化剂

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摘要

A new heteroleptic ruthenium complex, coded CYC-B19, incorporating an ancillary ligand endowed with hexylthio-bithiophene segments and a conjugated anchoring ligand with vinyl groups was prepared. This new sensitizer exhibits a lower energy MLCT band centred at 562 nm with a remarkably high molar absorption coefficient of 2.97 × 104 M−1 cm−1. DFT-TDDFT theoretical calculation revealed that insertion a vinyl group in the anchoring ligand pushes the LUMO electron locating more on the anchoring ligand. This will benefit the electron transfer from dye to TiO2 when the dye molecules were excited by light. Physicochemical measurements and the optimization of electrolyte were done to investigate the potential of CYC-B19 in TiO2 scattering-layer free dye-sensitized solar cells. Not only is a good photovoltaic efficiency of 8.4% reached, but the transparent device sensitized by CYC-B19 also presents a superior spectral response to its predecessor CYC-B11.
机译:制备了新的杂合钌复合物,其编码为CYC-B19,其掺入了具有己硫基-联噻吩片段的辅助配体和具有乙烯基的共轭锚定配体。这种新的敏化剂具有较低的能量MLCT带,中心位于562 nm,摩尔吸收系数非常高,为2.97×104 M-1 cm-1。 DFT-TDDFT理论计算表明,在锚定配体中插入乙烯基会推动LUMO电子更多地位于锚定配体上。当染料分子被光激发时,这将有利于电子从染料转移到TiO2。进行了理化测量和电解质的优化,以研究CYC-B19在TiO2散射层无染料敏化太阳能电池中的潜力。不仅达到了8.4%的良好光伏效率,而且被CYC-B19敏化的透明器件还呈现出比其前身CYC-B11更好的光谱响应。

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