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Modeling electric field-induced quenching in conjugated polymers and oligomers

机译:对共轭聚合物和低聚物中电场诱导的猝灭进行建模

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The phenomenon of electric field-induced emission quenching is important in organic light-emitting diodes because operating conditions involve large electric fields. Past experimental work on light-emitting polymers and oligomers showed that field-induced quenching (FIQ) efficiencies are higher in non-rigid molecules such as poly(p-phenylene vinylene) or PPV, than in similar, more planar molecules. Based on this relationship, wo previously-proposed that the applied field enhances internal conversion decay channels. Our further studies built on this idea by examining FIQ in PPV oligomers of varying length using computational methods. Calculations performed at the INDO/S-CI level showed the presence of free electron-hole pair (FEHP) states which are stabilized by the uniform external electric field. These FEHP states undergo an avoided crossing with the fluorescent 1B_u bound exciton state at sufficiently high field magnitudes. The magnitude of the electronic coupling between the FEHP and 1B_u state, determined from these avoided crossings, is found to be a function of the field at which these states cross. This function is universal in that it applies to all FEHP states in PPV. This includes FEHP states on different length oligomers and the multiple FEHP states on a given length oligomer. Combining this universal function with simple models for the surrounding dielectric medium and effects of disorder allowed Marcus theory to be used to develop a model of FIQ. The resulting model yields reasonable quantitative agreement with FIQ magnitudes, dependence on oligomer length, and threshold field strengths at which quenching is observed. Here, the universal curve, relating electronic coupling to the field at which the FEHP and 1B_u states cross, is examined for planar, ordered oligomers of polyfluorene and ladder-type poly(p-phenylene). The dependence is similar to PPV, suggesting that this curve is universal not just across states, but also across this family of conjugated polymers. Given that the electronic couplings are similar, the observed differences in FIQ may be attributed to other factors, including especially the reduced degree of structural disorder present for these more rigid systems.
机译:电场引起的发射猝灭现象在有机发光二极管中很重要,因为工作条件涉及大电场。过去有关发光聚合物和低聚物的实验工作表明,在非刚性分子(如聚对苯撑亚乙烯基)或PPV中,场致猝灭(FIQ)效率要高于相似的,更平坦的分子。基于这种关系,wo先前曾提出,外加磁场会增强内部转换衰减通道。通过使用计算方法检查不同长度的PPV低聚物中的FIQ,我们进一步研究了这一思想。在INDO / S-CI级别进行的计算表明存在自由电子-空穴对(FEHP)状态,该状态通过均匀的外部电场得以稳定。这些FEHP状态在足够高的场强下避免与荧光1B_u束缚的激子状态交叉。由这些避免的交叉确定的FEHP和1B_u状态之间的电子耦合的大小被发现是这些状态交叉的场的函数。此功能是通用的,因为它适用于PPV中的所有FEHP状态。这包括在不同长度的低聚物上的FEHP状态和在给定长度的低聚物上的多个FEHP状态。将该通用函数与周围介电介质的简单模型和无序效应相结合,可以将Marcus理论用于开发FIQ模型。生成的模型与FIQ大小,​​对低聚物长度的依赖性以及观察到淬灭的阈值场强产生了合理的定量一致性。在此,检查了电子耦合与FEHP和1B_u态交叉处的场有关的通用曲线,以求得聚芴和梯型聚对苯撑的平面有序低聚物。该依赖性类似于PPV,这表明该曲线不仅在状态之间通用,而且在该共轭聚合物家族中通用。假设电子耦合是相似的,则FIQ中观察到的差异可能归因于其他因素,尤其包括这些较刚性的系统所呈现的结构紊乱程度降低。

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