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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Wavelength-resolved studies of forster energy transfer in azobenzene-modified conjugated polymers: The competing roles of Exciton migration and spectral resonance
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Wavelength-resolved studies of forster energy transfer in azobenzene-modified conjugated polymers: The competing roles of Exciton migration and spectral resonance

机译:偶氮苯改性共轭聚合物中酯能转移的波长分辨研究:激子迁移和光谱共振的竞争作用

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We report results from wavelength-resolved fluorescence lifetime measurements of azobenzene-modified poly(p-phenylenevinylene) (PPV). The introduction of an azobenzene side chain enables reversible phototriggered modulation of the PPV emission. Intensity modulation is possible because Forster-type energy transfer from the PPV backbone to the azobenzene side-chain acceptors is more efficient for the cis-azobenzene isomer than for the trans. Here we explore how side-chain quenching competes with intrinsic PPV exciton dynamics. By probing the red and blue edges of the PPV emission, we evaluate the photophysical effects of the side chain on different exciton populations. Prior to UV exposure, when the azobenzene side chains are trans, three exciton subpopulations are detected: (i) rapidly diffusing and unquenched, (ii) nondiffusing and quenched, and (iii) low-energy, nondiffusing and unquenched. Exciton diffusion on the far blue edge is extremely efficient and mitigates the effects of side-chain quenching, giving rise to the first population. The second population is due to spectral resonance between side chains and nondiffusing excitons. The third population consists of excitons residing on the longest PPV chain segments. After UV-induced trans -> cis photoisomerization, we observe a greater degree of quenching on the red edge as spectral overlap improves and the lowest-energy chromophores become efficiently quenched. Hence, cis-azobenzene quenching of (iii) contributes greatly to the efficient photomodulation of these PPV derivatives. In addition, rapid exciton migration on the blue edge may help to improve modulation efficiencies by effectively competing with energy transfer to trans-azobenzene. These findings provide improved understanding of the underlying mechanisms of energy transfer to side chains in this important class of polymers.
机译:我们报告从偶氮苯改性的聚对苯撑乙烯撑(PPV)的波长分辨荧光寿命测量结果。引入偶氮苯侧链可实现PPV发射的可逆光触发调制。强度调节是可能的,因为从PPV主链到偶氮苯侧链受体的Forster型能量转移对顺式-偶氮苯异构体比对反式更有效。在这里,我们探讨了侧链淬灭如何与固有的PPV激子动力学竞争。通过探测PPV发射的红色和蓝色边缘,我们评估了侧链对不同激子种群的光物理效应。在暴露于紫外线之前,当偶氮苯侧链是反式时,会检测到三个激子亚群:(i)快速扩散和不猝灭;(ii)不扩散和猝灭;以及(iii)低能,不扩散和不猝灭。激子在深蓝色边缘上的扩散非常有效,并且减轻了侧链猝灭的影响,从而产生了第一个种群。第二人口是由于侧链和非扩散激子之间的光谱共振。第三人口由位于最长PPV链段上的激子组成。在紫外线诱导的反式->顺式光致异构化之后,我们观察到红色边缘的猝灭程度更高,因为光谱重叠改善,最低能量的生色团被有效猝灭。因此,(iii)的顺-偶氮苯猝灭极大地促进了这些PPV衍生物的有效光调制。此外,激子在蓝色边缘的快速迁移可能通过与竞争转移至反偶氮苯的能量有效竞争,从而有助于提高调制效率。这些发现提供了对这一重要聚合物类别中能量转移至侧链的潜在机理的更好理解。

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