共轭体系
光化学
超快激光光谱学
亚苯基
聚合物
材料科学
噻吩
密度泛函理论
接受者
激发态
皮秒
背景(考古学)
分子线
高分子化学
化学物理
化学
光谱学
计算化学
分子
有机化学
原子物理学
激光器
量子力学
古生物学
凝聚态物理
生物
复合材料
光学
物理
作者
Robert J. Dillon,Zhenxing Pan,Junlin Jiang,Russell W. Winkel,John M. Papanikolas,Kirk S. Schanze
标识
DOI:10.1021/acs.jpcc.0c05808
摘要
Energy transfer was explored in a series of poly(phenylene ethynylene) (PPE) polymers with increasing lengths that were end-capped with thiophene-benzothiadiazole (TBT) groups to form fully conjugated donor–acceptor polymers. For the polymers in solution, ultrafast transient absorption and time-resolved fluorescence spectroscopy reveal the majority of energy transfer from the PPE backbone to the TBT end-caps occurs rapidly, with subpicosecond and picosecond kinetics, and the rates are independent of the size of the polymer. The quantum efficiency for energy transfer was inversely proportional to the length of the polymers. Despite the highly conjugated structure, intrachain exciton hopping along the PPE backbone is significantly slower than the rate of radiative decay. The presence of an additional deleterious decay pathway for PPE excited state was also uncovered for the TBT-capped polymers. The photophysical phenomena are viewed in the context of the positioning of molecular orbitals, conjugation, and torsional effects, as determined by density functional theory calculations. The results of the photophysical characterization of this structurally well-defined system provide critical insight into the design of highly conjugated light-harvesting systems and their behavior as “molecular wires.″
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