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首页> 外文期刊>Chemistry: A European journal >Synthesis and photoinduced electron-transfer process of a novel triphenylamine-substituted polyfluorene-C-60 triad
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Synthesis and photoinduced electron-transfer process of a novel triphenylamine-substituted polyfluorene-C-60 triad

机译:新型三苯胺取代的聚芴-C-60三联体的合成及光诱导电子转移过程

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The photoinduced electron-transfer process of a newly prepared, soluble, pi-conjugated poly [9,9-bis(4-di-phenylaminophenyl)-2,7-fluorene] (PDPAF), covalently bridged, C-60 triad (C-60-PDPAF-C-60) is described. The molecular orbital calculations revealed that the majority of the highest occupied molecular orbital (HOMO) is located on the polyfluorene entity, while the lowest unoccupied molecular orbitals (LUMO) are found to be entirely on the C-60 entity. The excited-state electron-transfer processes were monitored by both steady-state and time-resolved emission as well as by transient absorption techniques in toluene and benzonitrile. By excitation of the polyfluorene moiety, fluorescence quenching of the singlet excited state of poly-fluorene moiety was observed. The nanosecond transient spectra in near-IR region revealed the charge-separation process from the polyfluorene moieties to the C-60 moiety through the excited singlet states of polyfluorene. The lifetimes of the charge separated states were evaluated to be 20-50 ns, depending on the solvent polarity.
机译:一种新制备的可溶的pi共轭键合的C-60三单元组(9,9-双(4-二苯基氨基苯基)-2,7-芴)(PDPAF)的π共轭聚[9,9-双(4-二苯基氨基苯基)-2,7-芴](PDPAF)的光诱导电子转移过程描述了-60-PDPAF-C-60)。分子轨道计算表明,最高占据分子轨道(HOMO)的大部分位于聚芴实体上,而最低未占据分子轨道(LUMO)则完全位于C-60实体上。激发态电子转移过程通过稳态发射和时间分辨发射以及在甲苯和苄腈中的瞬态吸收技术进行监测。通过激发聚芴部分,观察到聚芴部分的单重激发态的荧光猝灭。近红外区的纳秒瞬态光谱揭示了通过聚芴的激发单重态从聚芴部分到C-60部分的电荷分离过程。取决于溶剂极性,电荷分离态的寿命估计为20-50 ns。

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