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Novel poly(phenylene ethynylene)-type conjugated polymers containing diketopyrrolopyrrole or triphenylpyrazoline units in the main chain: synthesis, characterization and photophysical properties

机译:主链上含有二酮吡咯并吡咯或三苯基吡唑啉单元的新型聚苯撑乙炔基共轭聚合物:合成,表征和光物理性质

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BACKGROUND: Polymer-based light emitting diodes (PLEDs) have received considerable attention as they combine the good mechanical and processing properties of polymers with semiconducting behavior, and can be easily fabricated as flexible devices. To obtain high-performance PLED materials by balancing the carrier injection of polyfphenylene ethynylene)s (PPEs), polymers containing two aryl-heterocyclic rings, namely diketopyrrolopyrrole (DPP) or triphenylpyrazoline (TPP), have been synthesized and investigated. RESULTS: PPE-type polymers containing DPP or TPP units were synthesized using Heck-Sonogashira coupling methodology and characterized by ~1H NMR, Fourier transform infrared and UV-visible spectroscopies, elemental analysis, gel permeation chromatography, photoluminescence (PL), X-ray diffraction, thermogravimetic analysis and cyclic voltammetry. The polymers obtained are easily soluble in common solvents and form smooth and uniform films. They are yellow or red emitters as revealed by PL. In addition, they show large Stokes shifts, which is in agreement with their twisted molecular structures determined via quantum chemical calculations. CONCLUSION: PPE-type polymers containing DPP or TPP units were successfully synthesized by coupling polymerization. They exhibit band gaps of 1.73 and 2.37 eV, respectively, and show potential as PLED materials. In addition, DPP-containing polymers with a very low band gap could be applied as potential photovoltaic materials.
机译:背景:基于聚合物的发光二极管(PLED)受到了广泛的关注,因为它们将聚合物的良好机械和加工性能与半导体性能结合在一起,并且可以轻松地制造为柔性器件。为了通过平衡聚苯撑乙炔(PPE)的载流子注入获得高性能的PLED材料,已经合成并研究了包含两个芳基杂环的聚合物,即二酮吡咯并吡咯(DPP)或三苯基吡唑啉(TPP)。结果:使用Heck-Sonogashira偶联方法合成了含有DPP或TPP单元的PPE型聚合物,并通过〜1H NMR,傅立叶变换红外和紫外可见光谱,元素分析,凝胶渗透色谱,光致发光(PL),X射线表征衍射,热重分析和循环伏安法。获得的聚合物容易溶于普通溶剂,并形成光滑均匀的薄膜。如PL所示,它们是黄色或红色发射器。此外,它们显示出较大的斯托克斯位移,这与通过量子化学计算确定的扭曲分子结构相符。结论:通过偶联聚合成功地合成了具有DPP或TPP单元的PPE型聚合物。它们分别显示出1.73和2.37 eV的带隙,并显示出作为PLED材料的潜力。另外,具有非常低的带隙的含DPP的聚合物可以用作潜在的光伏材料。

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