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PF/CLAY hybrid materials: a simple method to modulate the optical properties

机译:PF / CLAY混合材料:调节光学特性的简单方法

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The aim of this work was modulate the emission properties and improve thermal stability of a conjugated polymer incorporated into an inorganic matrix. Hybrid material was prepared based on poly(9,9-dioctylfluorene-co-phenylene (PF) and montmorillonite (Na+Mt) clay using wet impregnation of 10, 30 and 50 wt.% of PF into Na+Mt and Na+Mt intercalated with ammonium quaternary salts (hexadecyltrimethylammonium — HDTMA) in a different proportions (OMt-1 and OMt-2). The materials were characterized by infrared and UV-Vis spectroscopy, fluorescence, X-ray diffratometry and thermogravimetry analysis. The results show that the presence of the clay alters the photoluminescent and thermal properties. Nevertheless, the degree of the clay organophilization and the clay content influences the luminescent properties due to the diverse interaction behavior between the polymer and clay. The sodium clay acted only as dispersing agent since no intercalation process occurs and the emission displacement is assigned to this behavior. In this case the PF emission displace from 402 to 395 nm. A nonlinear displacement is observed for PF/OMt-2 due the difficulties to conclude if the intercalation of the polymer occurs (379, 403 and 412 for hybrid with 10, 30 and 50%, respectively). For PF/OMt-1 a higher displacements for lower wavelength is observed due to intercalation of polymer chains and subsequent isolation in the interlamellar space, especially with material with 10 and 30% of PF in the hybrid material, whose displacement reached to 360 nm. All these results show that is possible to try to control the emission of the conjugated hybrid material changing the rate of the material.
机译:这项工作的目的是调节掺入无机基质中的共轭聚合物的发射性能并提高其热稳定性。基于聚(9,9-二辛基芴-共亚苯基(PF)和蒙脱土(Na + Mt)粘土,通过将10、30和50 wt。分别以不同比例(OMt-1和OMt-2)插入季铵盐(十六烷基三甲基铵-HDTMA),并通过红外和紫外-可见光谱,荧光,X射线衍射和热重分析对材料进行了表征。粘土的存在改变了光致发光和热学性质,但是由于聚合物和粘土之间的相互作用,粘土的有机化程度和黏土含量会影响发光性质,因为钠粘土只起分散剂的作用。发生插层过程,并将发射位移分配给该行为,在这种情况下,PF发射从402nm移至395nm,观察到PF / OMt-2的非线性位移。可以推断是否发生了聚合物的嵌入(分别与10%,30%和50%的杂化物混合时分别为379、403和412)。对于PF / OMt-1,由于聚合物链的插入和随后在层间空间中的隔离,观察到了较低波长的较高位移,特别是对于杂化材料中PF含量为10%和30%的材料,其位移达到360 nm。所有这些结果表明,可以尝试改变材料的比率来控制共轭杂化材料的发射。

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