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首页> 外文期刊>Polymers for advanced technologies >OCVD polymerization of PEDOT: effect of pre-treatment steps on PEDOT-coated conductive fibers and a morphological study of PEDOT distribution on textile yarns
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OCVD polymerization of PEDOT: effect of pre-treatment steps on PEDOT-coated conductive fibers and a morphological study of PEDOT distribution on textile yarns

机译:PEDOT的OCVD聚合:预处理步骤对PEDOT包覆的导电纤维的影响以及PEDOT在纺织纱线上分布的形态研究

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摘要

The functionalization of textile fibers with intrinsically conductive polymers has become a prominent research area throughout the world. A number of coating techniques have already been utilized and optimized to get the uniform layers of conductive polymers on the surface of different substrates. In our previous study, we produced poly(3,4-ethylenedioxythiophene) (PEDOT)-coated conductive fibers by employing oxidative chemical vapor deposition (oCVD) technique. This paper describes the effects of pre-treatment steps, such as surface treatment of textile fibers with organic solvents, drying of oxidant-enriched fibers at variable temperatures and time, and oxidant type on the electrical, mechanical, and thermal properties of PEDOT-coated conductive fibers. Two well-known oxidants, ferric(III)chloride and ferric(III)p-toluenesulfonate (FepTS), were studied, and then their results were compared. In order to verify the PEDOT-coated layer and, to some extent, its impregnation inside the viscose yarns, a morphological study was carried out by using the attenuated total reflectance Fourier transform infrared spectroscopic imaging technique and computed tomography scanning across the obtained conductive fibers. Differential scanning calorimetric and thermogravimetric analysis were utilized to investigate the thermal properties and the contents of PEDOT in PEDOT-coated fibers. The mechanical properties of conductive fibers were evaluated by tensile strength testing of produced fibers. Effects of all of these pre-treatment steps on electrical properties were analyzed with Kiethly picoammeter. This study cannot only be exploited to improve the properties of conductive fibers but also to optimize the oCVD process for the production of conductive textile fibers by coating with different conjugated polymers.
机译:用本征导电聚合物对纺织纤维进行功能化已成为世界范围内一个重要的研究领域。已经利用并优化了许多涂层技术,以在不同基板的表面上获得均匀的导电聚合物层。在我们以前的研究中,我们通过使用氧化化学气相沉积(oCVD)技术生产了涂覆有聚(3,4-乙撑二氧噻吩)(PEDOT)的导电纤维。本文介绍了预处理步骤的影响,例如用有机溶剂对纺织纤维进行表面处理,在可变的温度和时间下干燥富含氧化剂的纤维以及氧化剂类型对PEDOT涂层的电,机械和热性能的影响导电纤维。研究了两种著名的氧化剂,氯化铁(III)和对甲苯磺酸铁(III)(FepTS),然后比较了它们的结果。为了验证PEDOT涂层,并在一定程度上浸渍到粘胶丝中,使用衰减全反射傅里叶变换红外光谱成像技术和计算机X射线断层扫描技术对所获得的导电纤维进行了形态学研究。利用差示扫描量热法和热重分析法研究了PEDOT包覆纤维中PEDOT的热性能和含量。导电纤维的机械性能通过生产纤维的拉伸强度测试进行评估。使用Kiethly皮安计分析了所有这些预处理步骤对电性能的影响。这项研究不仅可以用来改善导电纤维的性能,而且可以通过涂覆不同的共轭聚合物来优化用于生产导电纺织纤维的oCVD工艺。

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