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Energy and charge transfer in electroluminescent polymer/porphyrin blends

机译:电致发光聚合物/卟啉共混物中的能量和电荷转移

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We present a study of the effects of blending electroluminescent polymers with platinum (II) octaethylporphyrin (PtOEP). We find that in the case of polymers which are measured to have HOMO and LUMO levels respectively below and above those of the PtOEP, and which have emission spectra overlapping the PtOEP absorption spectra, energy transfer occurs as expected. We find further evidence, in the form of steady state and time-resolved electroluminescence and photoluminescence measurements, whichindicates additional transfer of triplet excitons between polymer and porphyrin. Where the polymers have emission spectra overlapping the absorption spectra of PtOEP, but which are measured to have a HOMO or LUMO level between those of the porphyrin,quenching of the photoluminescence efficiency occurs. We propose this is due to charge separation between the porphyrin and the polymer, and show evidence for this in the form of photoinduced absorption measurements.
机译:我们展示了将电致发光聚合物与铂(II)八丁基卟啉(PTOEP)的效果的研究。我们发现,在测量的聚合物的情况下,测量分别低于POTEP的同性恋和LUMO水平,并且具有与POEP吸收光谱重叠的发射光谱,能量转移如预期发生。我们发现进一步的证据,以稳态和时间分辨的电致发光和光致发光测量,暗中聚合物和卟啉之间的三重态激子的额外转移。在聚合物具有与POEP的吸收光谱重叠的发射光谱,但是在卟啉的那些之间测量以在卟啉的那些之间具有同态或腔水平,发生光致发光效率的淬火。我们提出这是由于卟啉和聚合物之间的电荷分离,并以光诱导的吸收测量的形式显示出该据证明。

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