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Excitation energy migration in highly emissive semiconducting polymer blends probed by photoluminescence detected magnetic resonance

机译:通过光致发光探测磁共振探测高发射半导体聚合物共混物中的激发能迁移

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The excitation energy migration (EEM) in methyl-substituted ladder-type poly(para-phenylene) (m-LPPP) doped with small amounts of the red emitter poly(perylene-co-diethynylbenzene) (PPDB) was studied by photoluminescence (PL) detected magnetic resonance (PLDMR). It is suggested that the EEM process proceeds via two steps: (1) migration within the host and (2) transfer from the host to the guest. The contributions of the emissions from m-LPPP and PPDB to the PL-enhancing polaron PLDMR at g = 2, which are due to a reduction in the density of polarons acting as singlet exciton (SE) quenching centers, evolve differently with temperature. This provides clear evidence for SE migration in m-LPPP. The triplet exciton (TE) PLDMR at g = 4 shows a distinct peak for each polymer, with the intensity of the PPDB feature being proportional to its concentration. However, the spectral dependence recorded at the peak of each resonance is the same. This rules out the triplet-triplet-annihilation-mechanism in these blends for simple energetic reasons. Instead we propose that the resonance at g = 4 is due to a SE-quenching mechanism similar to that for the polaron resonance at g = 2. At the field-for-resonance the number of TE's decreases, and hence the PL increases.
机译:通过光致发光(PL)研究了掺有少量红色发射体聚(per-共-二乙炔基苯)(PPDB)的甲基取代的梯型聚对苯撑(m-LPPP)中的激发能迁移(EEM)。 )检测到磁共振(PLDMR)。建议EEM过程通过两个步骤进行:(1)主机内的迁移和(2)从主机到来宾的传输。在g = 2时,m-LPPP和PPDB的发射对PL增强极化子PLDMR的贡献是由于用作单线态激子(SE)猝灭中心的极化子密度的降低而引起的,随温度而变化。这为SE在m-LPPP中的迁移提供了明确的证据。 g = 4时的三重态激子(TE)PLDMR对每种聚合物均显示一个不同的峰,PPDB特征的强度与其浓度成正比。但是,记录在每个共振峰处的光谱依赖性是相同的。由于简单的能量原因,这排除了这些混合物中的三重态-三重态an灭机理。取而代之的是,我们认为在g = 4时的共振是由于SE猝灭机制所致,类似于SE在g = 2时的极化子共振。在共振场处,TE的数量减少,因此PL增加。

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