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Anatase TiO2 nanowires functionalized by organic sensitizers for solar cells: A screened Coulomb hybrid density functional study

机译:有机敏化剂对太阳能电池功能化的锐钛矿型TiO2纳米线:筛选的库仑混合密度泛函研究

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摘要

The adsorption of two different organic molecules cyanidin glucoside (C21O11H20) and TA-St-CA on anatase (101) and (001) nanowires has been investigated using the standard and the range separated hybrid density functional theory calculations. The electronic structures and optical spectra of resulting dye-nanowire combined systems show distinct features for these types of photochromophores. The lowest unoccupied molecular orbital of the natural dye cyanidin glucoside is located below the conduction band of the semiconductor while, in the case of TA-St-CA, it resonates with the states inside the conduction band. The wide-bandgap anatase nanowires can be functionalized for solar cells through electron-hole generation and subsequent charge injection by these dye sensitizers. The intermolecular charge transfer character of Donor-π-Acceptor type dye TA-St-CA is substantially modified by its adsorption on TiO2 surfaces. Cyanidin glucoside exhibits relatively stronger anchoring on the nanowires through its hydroxyl groups. The atomic structures of dye-nanowire systems re-optimized with the inclusion of nonlinear solvation effects showed that the binding strengths of both dyes remain moderate even in ionic solutions. © 2015 AIP Publishing LLC.
机译:使用标准和范围分离杂化密度泛函理论计算,研究了两种不同的有机分子氰苷葡萄糖苷(C21O11H20)和TA-St-CA在锐钛矿(101)和(001)纳米线上的吸附。所得染料-纳米线组合系统的电子结构和光谱显示出这些类型的光生色团的独特特征。天然染料花青素糖苷的最低未占据分子轨道位于半导体的导带之下,而对于TA-St-CA,它与导带内部的状态产生共振。宽带隙锐钛矿纳米线可以通过产生电子空穴并随后由这些染料敏化剂进行电荷注入而用于太阳能电池。施主-π-受体型染料TA-St-CA的分子间电荷转移特性通过其在TiO2表面上的吸附而大大改变。氰胺苷葡糖苷通过其羟基表现出相对较强的锚定在纳米线上。通过包含非线性溶剂化作用,染料-纳米线系统的原子结构得到了重新优化,结果表明,即使在离子溶液中,两种染料的结合强度仍保持中等水平。 ©2015 AIP Publishing LLC。

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