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Controlling Morphology of Nanostructured Conjugated Polymer Films by Electrophoretic Deposition

机译:电泳沉积控制纳米结构共轭聚合物薄膜的形貌

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The preparation of colloidal suspension through a simple method, injection of a small amount of toluene solution of target materials into non-solvent acetonitrile, has been successfully demonstrated for various conjugated polymers such as poly(3-octadecylthiophene), PAT-18. a poly(9,9-dioctylflu-orenyl-2, 7-yleneethynylene), POFE and poly(2-methoxy-5-(2'-ethylhexyloxy)- 1,4-phenylene vinylene), MEH-PPV and fullerene, C_(60). The colloidal suspension of mixtures of MEH-PPV and with almost equivalent weight ratio has also been obtained through the same process. The electrophoretic deposition from these suspensions results in nanostructured polymer film, as indicated by the atomic force microscopy (AFM) observation. A simple recipe for controlling average size of the colloidal particles in the nanostructured POFE, which involves changing the nonsolvent: solvent ratios, may be useful for controlling the nanoporosity of the film, which is very important in optoelectronic, electronic and electrochemical application. We report a novel way to load large amounts of unmodified C_(60) into the conjugated polymer, MEH-PPV. Since the polymer films obtained through this process has worked as emission layer in a light-emitting device, the film obtained through this process will also be able to work in photocells.
机译:通过简单的方法制备胶体悬浮液,将少量目标材料的甲苯溶液注入非溶剂乙腈中,已经成功地证明了各种共轭聚合物(如聚(3-十八烷基噻吩),PAT-18)的制备。聚(9,9-二辛基氟-烯基-2,7-亚乙炔基),POFE和聚(2-甲氧基-5-(2'-乙基己氧基)-1,4-亚苯基亚乙烯基),MEH-PPV和富勒烯,C_ (60)。通过相同的方法也已经获得了MEH-PPV的混合物的胶体悬浮液,其重量比几乎相等。这些悬浮液的电泳沉积可形成纳米结构的聚合物膜,如原子力显微镜(AFM)观察所示。控制纳米结构POFE中胶体颗粒平均尺寸的简单方法(包括改变非溶剂与溶剂的比例)可能对控制薄膜的纳米孔隙率有用,这在光电,电子和电化学应用中非常重要。我们报告了一种新颖的方式,将大量未修饰的C_(60)加载到共轭聚合物MEH-PPV中。由于通过该方法获得的聚合物膜已经用作发光器件中的发射层,因此通过该方法获得的膜也将能够在光电管中工作。

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