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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Controlling Interchain Interactions in Conjugated Polymers: The Effects of Chain Morphology on Exciton-Exciton Annihilation and Aggregation in MEH-PPV Films
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Controlling Interchain Interactions in Conjugated Polymers: The Effects of Chain Morphology on Exciton-Exciton Annihilation and Aggregation in MEH-PPV Films

机译:控制共轭聚合物中的链间相互作用:链形态对MEH-PPV膜中激子-激子An灭和聚集的影响

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The presence of interchain species in the photophysics of conjugated polymer films has been the subject of a great deal of controversy. In this paper, we present strong evidence that interchain species do form in conjugated polymer films, and that the degree of interchain interactions can be controlled by varying the solvent and polymer concentration of the solution from which the films are cast. Thus, much of the controversy in the literature can be resolved by noting that the polymer samples in different studies had different side groups or were prepared in different ways and thus have different degrees of interchain interaction. The photoluminescence (PL) of poly(2-methoxy-5-(2'-ethylhexyloxy)-1,4-phenylene vinylene), MEH-PPV, changes both its spectral shape and quantum yield when the films are prepared from different solutions or when the morphology is varied by annealing. Increasing the amount of interchain interactions enhances the red portion of the film's PL, a result assigned to a combination of changes in the vibronic structure of the PL of the exciton and increased numbers of weakly emissive interchain species. Photoluminescence excitation spectroscopy shows that excitation to the red edge of the absorption band preferentially enhances the red emission, suggesting that the interchain species are aggregates with a distinct ground state absorption. Scanning force microscopy shows topographic features that correlate with the degree of interchain interactions, verifying that the morphology of conjugated polymer films changes with polymer concentration, choice of solvent, and spin-casting speed. Even at low excitation intensities, photooxidative damage occurs quickly in MEH-PPV films excited in air, and the rate at which damage occurs is sensitive to the packing of the polymer chains. For samples under vacuum at low excitation intensity, a long-lived emissive tail, in combination with excited-state absorption dynamics that do not match those of the emissive species, provide direct evidence for the production of interchain aggregates. Annealing an MEH-PPV film produces a photophysical signature similar to photooxidation, implying that defects in conjugated polymer films are intrinsic and depend on the details of how the chains are packed. At higher excitation intensities, we find that exciton-exciton annihilation occurs, and that the probability for annihilation can vary by an order of magnitude depending on the degree of interchain contact in the film. Finally, we show that changing the film morphology has a direct effect on the performance of MEH-PPV-based light-emitting diodes. Higher degrees of interchain interaction enhance the mobility of carriers at the expense of lower quantum efficiencies for electroluminescence. Taken together, the results reconcile much of the contradictory literature and provide a prescription for the optimization of conjugated polymer films for particular device applications.
机译:共轭聚合物薄膜的光物理中链间物种的存在一直是许多争议的主题。在本文中,我们提供了强有力的证据,证明共轭聚合物薄膜中确实形成了链间物质,并且链间相互作用的程度可以通过改变流延薄膜的溶液中的溶剂和聚合物浓度来控制。因此,可以通过注意到不同研究中的聚合物样品具有不同的侧基或以不同的方式制备并因此具有不同程度的链间相互作用来解决文献中的许多争议。聚(2-甲氧基-5-(2'-乙基己氧基)-1,4-亚苯基亚乙烯基)MEH-PPV的光致发光(PL)改变了薄膜的光谱形状和量子产率,这是由不同溶液或不同溶液制备的。当通过退火改变形态时。链间相互作用的数量增加会增强胶片PL的红色部分,这是激子PL的振动子结构变化和弱发射链间物种数量增加的综合结果。光致发光激发光谱表明,激发到吸收带的红色边缘会优先增强红色发射,这表明链间物质是具有明显基态吸收的聚集体。扫描力显微镜显示了与链间相互作用程度相关的形貌特征,证实了共轭聚合物薄膜的形态随聚合物浓度,溶剂选择和旋转浇铸速度而变化。即使在低激发强度下,在空气中激发的MEH-PPV膜中也会迅速发生光氧化损伤,并且损伤发生的速率对聚合物链的堆积很敏感。对于处于低激发强度的真空下的样品,长寿命的发射尾部与激发态的吸收动力学(与发射物种的激发动力学不匹配)相结合,为链间聚集体的产生提供了直接的证据。对MEH-PPV薄膜进行退火会产生类似于光氧化的光物理特征,这意味着共轭聚合物薄膜中的缺陷是固有的,并且取决于链的堆积方式。在较高的激发强度下,我们发现发生了激子-激子occurs灭,并且ni灭的可能性可以根据薄膜中链间接触的程度而变化一个数量级。最后,我们表明,改变膜的形态对基于MEH-PPV的发光二极管的性能具有直接影响。较高程度的链间相互作用以降低电致发光的量子效率为代价提高了载流子的迁移率。两者合计,结果调和了许多矛盾的文献,并为优化用于特定器件应用的共轭聚合物薄膜提供了处方。

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