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首页> 外文期刊>Nanoscience and Nanotechnology Letters >Electrical Conductivity and Stability of Oxidative Chemical Vapor Deposition Copolymer Thin Films of Thiophene and Pyrrole
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Electrical Conductivity and Stability of Oxidative Chemical Vapor Deposition Copolymer Thin Films of Thiophene and Pyrrole

机译:噻吩和吡咯氧化化学气相沉积共聚物薄膜的电导率和稳定性

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摘要

In a single step polymerization and coating, oxidative chemical vapor deposition (oCVD) is used to synthesize copolymers of thiophene and pyrrole. The copolymer composition is controlled simply by adjusting the ratio of the comonomers in the feed. The electrical conductivity of the copolymer is found to be higher than the homopolymer of either comonomer and is more stable in the ambient over the period of three months tested. The enhanced conductivity and stability are attributed to fewer defects and enhanced doping as evidenced by Raman and X-ray photoelectron spectroscopy. Grazing incident angle X-ray diffraction indicates there is no long range order or crystallinity to explain the enhanced electrical properties. Instead, the film synthesis approach and the resulting film chemical environment are believed to be the primary reasons behind the enhanced conductivity of the deposited copolymer films.
机译:在一步聚合和涂覆过程中,氧化化学气相沉积(oCVD)用于合成噻吩和吡咯的共聚物。只需调节进料中共聚单体的比例即可控制共聚物的组成。发现该共聚物的电导率高于任一种共聚单体的均聚物,并且在测试的三个月内在环境中更稳定。电导率和稳定性的提高归因于较少的缺陷和掺杂的增加,如拉曼光谱和X射线光电子能谱所证明的。掠入射角X射线衍射表明没有长程有序或结晶度可以解释增强的电性能。相反,认为膜合成方法和所得膜化学环境是所沉积的共聚物膜的电导率提高的主要原因。

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