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Singlet, triplet, electron and hole transport along single polymer chains

机译:沿单条聚合物链的单重态,三重态,电子和空穴传输

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The diffusion of singlet and triplet excitons along single polyfluorene chains in solution has been studied by monitoring their transport to end traps. Time-resolved transient absorption and steady state fluorescence were used to determine fractions of excitons that reach the end caps. In order to accurately determine the singlet diffusion coefficient, the fraction of polymer ends that have end traps was determined through a combination of NMR and triplet quenching experiments. The distributions of polymer lengths were also taken into account and the resulting analysis points to a surprisingly long singlet diffusion length of 34 run. Experiments on triplet transport also suggest that the entire 100nm+ chain is accessible to the triplet during its lifetime suggesting a lack of hindrance by defects or traps on this timescale. Time Resolved Microwave Conductivity measurements were also performed on a series of different length oligo- and polyfluorenes in solution allowing a global fit to be performed to extract an accurate intrachain mobility of 1.1 cm~2/Vs.
机译:通过监测单重和三重态激子在末端陷阱中的传输,研究了单重和三重态激子在溶液中沿单聚芴链的扩散。时间分辨的瞬态吸收和稳态荧光用于确定到达端帽的激子的分数。为了准确确定单线态扩散系数,通过结合NMR和三线态猝灭实验确定了具有末端陷阱的聚合物末端比例。还考虑了聚合物长度的分布,并且所得的分析表明出乎意料的长的单线态扩散长度为34nm。关于三重态传输的实验还表明,三重态在其整个生命周期中都可以访问整个100nm +链,这表明在该时间尺度上没有缺陷或陷阱的阻碍。还对溶液中一系列不同长度的低聚和多芴进行了时间分辨微波电导率测量,从而可以进行整体拟合以提取1.1 cm〜2 / Vs的精确链内迁移率。

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