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Vibrational coherence transfer in an electronically decoupled molecular dyad

机译:电子去耦分子二元组中的振动相干传递

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摘要

The ring opening of a dithienylethene photoswitch incorporated in a bridged boron-dipyrromethene - dithienylethene molecular dyad was investigated with ultrafast spectroscopy. Coherent vibrations in the electronic ground state of the boron-dipyrromethene are triggered after selective photoexcitation of the closed dithienylethene indicating vibrational coupling although the two moieties are electronically isolated. A distribution of short-lived modes and a long-lived mode at 143 cm−1 are observed. Analysis of the theoretical frequency spectrum indicates two modes at 97 cm−1 and 147 cm−1 which strongly modulate the electronic transition energy. Both modes exhibit a characteristic displacement of the bridge suggesting that the mechanical momentum of the initial geometry change after photoexcitation of the dithienylethene is transduced to the boron-dipyrromethene. The relaxation to the dithienylethene electronic ground state is accompanied by significant heat dissipation into the surrounding medium. In the investigated dyad, the boron-dipyrromethene acts as probe for the ultrafast photophysical processes in the dithienylethene.
机译:用超快光谱研究了掺入桥接的硼-二吡咯亚甲基-二噻吩基乙烯分子二联体中的二噻吩基乙烯光开关的开环。闭环二噻吩基乙烯的选择性光激发后,尽管存在两个电子分离的部分,但在激活的二噻吩基乙烯的光致激发后,引发了硼-二吡咯亚甲基的电子基态相干振动。在143 cm -1 处观察到了短寿命模式和长寿命模式的分布。理论频谱分析表明,在97 cm -1 和147 cm -1 两种模式下,电子跃迁能量具有很强的调制能力。两种模式都表现出桥的特征位移,这表明在二噻吩基乙烯的光激发之后,初始几何形状的机械动量发生了变化,从而转化为硼-二吡咯亚甲基。二噻吩基乙烯电子基态的弛豫伴随着向周围介质的大量散热。在研究的二元组中,硼二吡咯亚甲基充当了二噻吩基乙烯中超快光物理过程的探针。

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