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A solution processible semiconducting polymer interlayer for blue light-emitting diodes

机译:用于蓝色发光二极管的可溶液加工的半导体聚合物中间层

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Polyimide containing triphenylamine derivative (TPD-PI) was synthesized to prepare a polymer interlayer having insolubility in common nonpolar solvents for light-emitting polymers. The TPD-PI was prepared from the synthesized diamine monomer and 4,4'-(hexafluoropropylidene)-diphthalic anhydride by the standard two-step polymerization method, which involved ring-opening polymerization and subsequent cyclodehydration. We incorporated this novel semiconducting polymer (TPD-PI) between the hole conducting layer (PEDOT:PSS) and the blue-emitting layer (PFO, poly(dioctylfluorene)) of a light-emitting diode. The molecular architecture of the TPD-PI interlayer means that it is soluble in most aprotic polar solvents, and completely insoluble in acetone, toluene, and xylene, which are used as solvents for most emitting layers; these solubility properties make the direct spin-coating of the interlayer possible. The surfaces of interlayer have stability against the general organic solvents for a polymeric layer with a nanometre scale. The efficiency increases from 0.25 to 0.351 cd A?1 and the lifetime rises by 50% as a result of the insertion of the interlayer, which also has advantages in the following areas: interface structure, solubility characteristics, energetic position, hole transport of the interlayer, and thermal stability of the polyimide main chain.
机译:合成包含三苯胺衍生物(TPD-PI)的聚酰亚胺以制备在发光聚合物的普通非极性溶剂中不溶的聚合物中间层。通过标准的两步聚合方法,由合成的二胺单体和4,4'-(六氟亚丙基)-二邻苯二甲酸酐制备TPD-PI,该方法包括开环聚合和随后的环脱水。我们在空穴传导层(PEDOT:PSS)和发光二极管的蓝色发光层(PFO,聚(二辛基芴))之间掺入了这种新型半导体聚合物(TPD-PI)。 TPD-PI中间层的分子结构意味着它可溶于大多数非质子极性溶剂,而完全不溶于丙酮,甲苯和二甲苯,而丙酮,甲苯和二甲苯被用作大多数发射层的溶剂。这些溶解性使直接旋涂中间层成为可能。中间层的表面对具有纳米级的聚合物层的一般有机溶剂具有稳定性。由于插入了中间层,效率从0.25 cd A?1增加到0.351 cd A?1,寿命增加了50%,这在以下方面也具有优势:界面结构,溶解度特性,高能位置,空穴传输中间层,以及聚酰亚胺主链的热稳定性。

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