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Low temperature single molecule spectroscopy of MEH-PPV conjugated polymer molecules.

机译:MEH-PPV共轭聚合物分子的低温单分子光谱。

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摘要

Electronic energy transfer and singlet-triplet exciton interactions in conjugated polymers are investigated by low temperature single molecule spectroscopy SMS. Low temperature SMS leads to narrower vibronic features allowing for a more detailed and definitive analysis. Low temperature spectroscopy also suppresses unwanted thermally assisted photochemical processes especially photo-oxidation. The SMS data obtained for MEH-PPV samples as a function of molecular weight reveal a bimodal distribution of SMS emission maxima, confirming previous room temperature SMS results. By analyzing the narrow bandwidth fluorescence spectra at 20 K, the results give new insights on the energy transfer pathways in single conjugated polymer, giving new evidence for efficient energy funneling to a small number of low energy sites.; The results furthermore shed light on the molecular nature of "blue" and "red" sites. In addition to studies on MEH-PPV itself, energy transfer has been investigated in a diblock polymer, consisting of an energy donor and energy acceptor block. SMS results indicate that the addition of energy donor block may induce the significant morphology change of energy acceptor block, which modifies electronic energy transfer behavior. Microsecond dynamics of triplet exciton has been investigated by single molecule excitation intensity modulation spectroscopy leading to a quantitative analysis of the rate constants for triplet formation and singlet quenching by triplets. In addition, the effect of the sample preparation and excitation condition on the single molecule spectroscopy of conjugated polymers is examined at low temperature, revealing that high excitation intensity, environmental impurities and near-by interfaces may damage the MEH-PPV molecules photochemically.
机译:通过低温单分子光谱SMS研究了共轭聚合物中的电子能量转移和单重态-三重态激子相互作用。低温短信会导致更窄的振动特征,从而可以进行更详细和确定的分析。低温光谱学还抑制了不需要的热辅助光化学过程,特别是光氧化。从MEH-PPV样品获得的SMS数据作为分子量的函数揭示了SMS发射最大值的双峰分布,从而确认了以前的室温SMS结果。通过分析在20 K处的窄带宽荧光光谱,结果为单一共轭聚合物中的能量转移途径提供了新的见解,为有效的能量集中到少数低能位提供了新的证据。结果进一步阐明了“蓝色”和“红色”位点的分子性质。除了对MEH-PPV本身进行研究以外,还对由能量供体和能量受体嵌段组成的二嵌段聚合物进行了能量转移研究。 SMS结果表明,能量供体嵌段的加入可能引起能量受体嵌段的显着形态变化,从而改变了电子能量转移行为。通过单分子激发强度调制光谱研究了三重态激子的微秒动力学,从而导致了三重态形成和三重态猝灭的速率常数的定量分析。此外,在低温下检查了样品制备和激发条件对共轭聚合物单分子光谱的影响,发现高激发强度,环境杂质和邻近界面可能会光化学损伤MEH-PPV分子。

著录项

  • 作者

    Kim, Doo Young.;

  • 作者单位

    The University of Texas at Austin.;

  • 授予单位 The University of Texas at Austin.;
  • 学科 Chemistry Physical.
  • 学位 Ph.D.
  • 年度 2006
  • 页码 158 p.
  • 总页数 158
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 物理化学(理论化学)、化学物理学;
  • 关键词

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