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Triplet excited state properties in variable gap π-conjugated donor–acceptor–donor chromophores

机译:可变间隙π共轭供体-受体-供体发色团的三重态激发态性质

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摘要

A series of variable band-gap donor–acceptor–donor (DAD) chromophores capped with platinum(ii) acetylide units has been synthesized and fully characterized by electrochemical and photophysical methods, with particular emphasis placed on probing triplet excited state properties. A counter-intuitive trend of increasing fluorescence quantum efficiency and lifetime with decreasing excited state energy (optical gap) is observed across the series of DAD chromophores. Careful study of the excited state dynamics, including triplet yields (as inferred from singlet oxygen sensitization), reveals that the underlying origin of the unusual trend in the fluorescence parameters is that the singlet–triplet intersystem crossing rate and yield decrease with decreasing optical gap. It is concluded that the rate of intersystem crossing decreases as the LUMO is increasingly localized on the acceptor unit in the DAD chromophore, and this result is interpreted as arising because the extent of spin–orbit coupling induced by the platinum heavy metal centers decreases as the LUMO is more localized on the acceptor. In addition to the trend in intersystem crossing, the results show that the triplet decay rates follow the Energy Gap Law correlation over a 1.8 eV range of triplet energy and 1000-fold range of triplet decay rates. Finally, femtosecond transient absorption studies for the DAD chromophores reveals a strong absorption in the near-infrared region which is attributed to the singlet excited state. This spectral band appears to be general for DAD chromophores, and may be a signature of the charge transfer (CT) singlet excited state.
机译:已合成了一系列用乙炔铂(ii)封端的可变带隙供体-受体-供体(DAD)生色团,并通过电化学和光物理方法对其进行了充分表征,尤其着重于探测三重态激发态性质。在一系列DAD发色团之间观察到与降低激发态能量(光学间隙)有关的荧光量子效率和寿命增加的反直觉趋势。仔细研究激发态动力学,包括三重态产量(从单重态氧敏化推断),发现荧光参数异常趋势的根本原因是,单重态-三重态系统间交叉速率和产率随光学间隙的减小而降低。结论是,随着LUMO越来越多地定位在DAD生色团的受体单元上,系统间交叉的速率降低,并且该结果被解释为是由于铂重金属中心引起的自旋-轨道耦合程度随CD的降低而降低的。 LUMO更加本地化在受体上。除了系统间交叉的趋势外,结果还显示三重态衰减速率在三重态能量的1.​​8 eV范围和三重态衰减速率的1000倍范围内遵循能隙定律相关性。最后,飞秒对DAD生色团的瞬态吸收研究表明,在近红外区有很强的吸收,这归因于单线态激发态。该谱带似乎是DAD生色团的通用谱带,并且可能是电荷转移(CT)单线态激发态的标志。

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