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Alignment of the dye's molecular levels with the TiO2 band edges in dye-sensitized solar cells: a DFT-TDDFT study

机译:染料敏化太阳能电池中染料分子水平与TiO2能带边缘的对准:DFT-TDDFT研究

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We present a theoretical study of the lineup of the LUMO of Ru(II)-polypyridyl (N3 and N719) molecular dyes with the conduction band edge of a TiO2 anatase nanoparticle. We use density functional theory (DFT) and the Car-Parrinello scheme for efficient optimization of the dye-nanoparticle systems, followed by hybrid B3LYP functional calculations of the electronic structure and time-dependent DFT (TDDFT) determination of the lowest vertical excitation energies. The electronic structure and TDDFT calculations are performed in water solution, using a continuum model. Various approximate procedures to compute the excited state oxidation potential of dye sensitizers are discussed. Our calculations show that the level alignment for the interacting nanoparticle-sensitizer system is very similar, within about 0.1 eV, to that for the separated TiO2 and dye. The excellent agreement of our results with available experimental data indicates that the approach of this work could be used as an efficient predictive tool to help the optimization of dye-sensitized solar cells.
机译:我们目前对具有锐钛矿型TiO2纳米粒子的导带边缘的Ru(II)-聚吡啶(N3和N719)分子染料LUMO系列的理论研究。我们使用密度泛函理论(DFT)和Car-Parrinello方案对染料-纳米粒子系统进行有效优化,然后进行电子结构的混合B3LYP功能计算和最低垂直激发能的时变DFT(TDDFT)测定。使用连续模型在水溶液中进行电子结构和TDDFT计算。讨论了计算染料敏化剂激发态氧化电位的各种近似程序。我们的计算表明,相互作用的纳米粒子-敏化剂体系的能级排列与分离的TiO2和染料的能级排列非常相似,大约在0.1 eV之内。我们的结果与可用的实验数据的极好的一致性表明,这项工作的方法可以用作有效的预测工具,以帮助优化染料敏化太阳能电池。

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