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首页> 外文期刊>Physical chemistry chemical physics: PCCP >Electronic energy and electron transfer processes in photoexcited donor-acceptor dyad and triad molecular systems based on triphenylene and perylene diimide units
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Electronic energy and electron transfer processes in photoexcited donor-acceptor dyad and triad molecular systems based on triphenylene and perylene diimide units

机译:基于三亚苯基和per二酰亚胺单元的光激发供体-受体二元组和三元组分子系统中的电子和电子转移过程

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摘要

We investigate the photophysical properties of organic donor-acceptor dyad and triad molecular systems based on triphenylene and perylene diimide units linked by a non-conjugated flexible bridge in solution using complementary optical spectroscopy techniques. When these molecules are diluted in dichloromethane solution, energy transfer from the triphenylene to the perylene diimide excited moieties is evidenced by time-resolved fluorescence measurements resulting in a quenching of the emission from the triphenylene moieties. Simultaneously, another quenching process that affects the emission from both donor and acceptor units is observed. Solution ultrafast transient absorption measurements provide evidence of photo-induced charge transfer from either the donor or the acceptor depending upon the excitation. Overall, the analysis of the detailed time-resolved spectroscopic measurements carried out in the dyad and triad systems as well as in the triphenylene and perylene diimide units alone provides useful information both to better understand the relations between energy and charge transfer processes with molecular structures, and for the design of future functional dyad and triad architectures based on donor and acceptor moieties for organic optoelectronic applications.
机译:我们研究了有机供体-受体二元组和三元组分子系统的光物理性质,该系统基于三苯基和per二酰亚胺单元,通过非共轭柔性桥在溶液中使用互补光谱技术连接在一起。当这些分子在二氯甲烷溶液中稀释时,通过时间分辨的荧光测量证明了从三亚苯基向to二酰亚胺激发的部分的能量转移,导致三亚苯基部分的发射猝灭。同时,观察到另一个影响来自供体和受体单元的发射的猝灭过程。溶液超快速瞬态吸收测量提供了根据激发从供体或受体进行光诱导电荷转移的证据。总的来说,仅在二元组和三元组系统以及三亚苯基和per二酰亚胺单元中进行的详细的时间分辨光谱测量分析,就可以提供有用的信息,以更好地了解能量和电荷转移过程与分子结构之间的关系,并基于有机光电应用的供体和受体部分设计未来的功能性二元和三元体系结构。

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