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The Effect of Dye Density on the Efficiency of Photosensitization of TiO2 Films: Light-Harvesting by Phenothiazine-Labelled Dendritic Ruthenium Complexes

机译:染料密度对TiO2薄膜光敏效率的影响:吩噻嗪-bell缩的树枝状钌配合物的光捕获

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摘要

A family of dendritic tris-bipyridyl ruthenium coordination complexes incorporating two or four carboxylate groups for binding to a TiO2 surface site and another dendritic linker between the metal complex and highly absorptive dyes were formulated as thin films on TiO2 coated glass. The family included phenothiazine-substituted dendrons of increasing structural complexity and higher optical density. The dye-loaded films were characterized by steady-state emission and absorption measurements and by kinetic studies of luminescence and transient absorption. Upon photoexcitation of the bound dyes, rapid electron injection into the metal oxide film was the dominant observed process, producing oxidized dye that persisted for hundreds of milliseconds. Complex decay profiles for emission, transient absorption, and optical bleaching of the dendritic dyes point to highly heterogeneous behavior for the films, with observed persistence lifetimes related directly to structurally enhance electronic coupling between the metal oxide support and the dendritic dyes.
机译:将一族树枝状三-联吡啶鎓钌配位络合物掺入两个或四个与TiO2表面位点结合的羧酸盐基团以及金属络合物和高吸收性染料之间的另一个树枝状接头,制成在TiO2涂层玻璃上的薄膜。该家族包括结构复杂性增加和光密度更高的吩噻嗪取代的树枝状分子。通过稳态发射和吸收测量以及发光和瞬态吸收的动力学研究来表征负载染料的薄膜。在对结合的染料进行光激发后,观察到的主要过程是快速将电子注入金属氧化物膜,从而产生持续数百毫秒的氧化染料。树枝状染料的发射,瞬态吸收和光学漂白的复杂衰减曲线表明,薄膜具有高度异质的行为,观察到的持久寿命与金属氧化物载体和树枝状染料之间的电子偶联在结构上直接相关。

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