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Microwave-Assisted Synthesis of an Alternant Poly(fluorene–oxadiazole). Synthesis Properties and White Light-Emitting Devices

机译:微波辅助合成交替聚芴-恶二唑。合成性质和白光发射器件

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摘要

An alternant poly(dihexyl fluorene-co diphenyl oxadiazole) has been synthetized by microwave-assisted oxidative polymerization. The structure has been confirmed by H-NMR and FTIR spectroscopies. Gel permeation chromatography indicated high molecular weight and low polydispersity index. DFT calculations suggested a complete separation of HOMO and LUMO orbitals, which were located on fluorene and oxadiazole moiety, respectively. X-ray diffraction, polarized light microscopy, and atomic force microscopy indicated the polymer tendency to stack into a layered morphology with a more compact structure for the films prepared by spin coating. Furthermore, UV-vis and photoluminescence spectroscopies indicated the formation of H-aggregates which played a key role in photoluminescence quenching in solid state. Nevertheless, the good charge mobility gained due to the orbital overlapping in H-aggregates led to excellent electroluminescence, which enabled the development of white OLED devices with outstanding stability.
机译:通过微波辅助的氧化聚合反应合成了一种交替的聚(二己基芴-二苯基恶二唑)。该结构已通过1 H-NMR和FTIR光谱学证实。凝胶渗透色谱法表明分子量高,多分散指数低。 DFT计算表明,分别位于芴和恶二唑部分上的HOMO和LUMO轨道完全分离。 X射线衍射,偏光显微镜和原子力显微镜表明,对于通过旋涂制备的膜,聚合物倾向于堆叠成具有更紧凑结构的层状形态。此外,紫外可见光谱和光致发光光谱学表明H-聚集体的形成在固态下在光致发光猝灭中起关键作用。然而,由于H-聚集体中的轨道重叠而获得的良好的电荷迁移率导致优异的电致发光,这使得能够开发具有出色稳定性的白色OLED器件。

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