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Discrete Intensity Jumps and Intramolecular Electronic Energy Transfer in the Spectroscopy of Single Conjugated Polymer Molecules

机译:单共轭聚合物分子光谱中的离散强度跃迁和分子内电子能量转移

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Single-molecule fluorescence spectroscopy of a multichromophoric conjugated polymer (molecular weight ~20,000) revealed surprising single-step photobleaching kinetics and acute jumps in fluorescence intensity. These jumps were shown not to result from spectral diffusion and were attributed to fluctuations in the quantum yield of emission for the molecules. The data indicate efficient intramolecular electronic energy transfer along the polymer chain to a localized fluorescence-quenching polymer defect. The defects are created by reversible photochemistry of the polymer. These findings have implications for the use of conjugated polymers in light-emitting diode displays and sensors.
机译:多发色共轭聚合物(分子量〜20,000)的单分子荧光光谱显示出令人惊讶的单步光致漂白动力学和荧光强度的急剧变化。这些跳跃并非由光谱扩散引起,而是归因于分子发射量子产率的波动。数据表明沿着聚合物链的有效分子内电子能量转移到局部荧光猝灭聚合物缺陷。缺陷是由聚合物的可逆光化学产生的。这些发现对共轭聚合物在发光二极管显示器和传感器中的使用具有影响。

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