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Dynamics of singlet fission and electron injection in self-assembled acene monolayers on titanium dioxide

机译:二氧化钛上自组装并苯单分子膜的单重态裂变和电子注入动力学

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摘要

We employ a combination of linear spectroscopy, electrochemistry, and transient absorption spectroscopy to characterize the interplay between electron transfer and singlet fission dynamics in polyacene-based dyes attached to nanostructured TiO2. For triisopropyl silylethynyl (TIPS)-pentacene, we find that the singlet fission time constant increases to 6.5 ps on a nanostructured TiO2 surface relative to a thin film time constant of 150 fs, and that triplets do not dissociate after they are formed. In contrast, TIPS-tetracene singlets quickly dissociate in 2 ps at the molecule/TiO2 interface, and this dissociation outcompetes the relatively slow singlet fission process. The addition of an alumina layer slows down electron injection, allowing the formation of triplets from singlet fission in 40 ps. However, the triplets do not inject electrons, which is likely due to a lack of sufficient driving force for triplet dissociation. These results point to the critical balance required between efficient singlet fission and appropriate energetics for interfacial charge transfer.
机译:我们采用线性光谱,电化学和瞬态吸收光谱的组合来表征附着在纳米结构TiO2上的多并苯型染料的电子转移与单线态裂变动力学之间的相互作用。对于三异丙基甲硅烷基乙炔基(TIPS)-并五苯,我们发现相对于150 fs的薄膜时间常数,纳米结构TiO2表面上的单线态裂变时间常数增加至6.5 ps,并且三重态在形成后不会解离。相比之下,TIPS-并四苯单峰在分子/ TiO2界面处以2 ps的速度迅速解离,这种解离的竞争胜于相对较慢的单峰裂变过程。氧化铝层的添加减慢了电子注入的速度,从而允许以40 ps的单峰裂变形成三重态。但是,三重态不会注入电子,这很可能是由于缺乏足够的三线态解离驱动力所致。这些结果表明,在有效的单重态裂变和适当的能量学之间,界面电荷转移需要达到关键的平衡。

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