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Fabrication of patterned polyaniline microstructure through microcontact printing and electrochemistry

机译:通过微接触印刷和电化学法制备带图案的聚苯胺微结构

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Polyaniline (PANI) microstructures on ITO glass surface were achieved by microcontact printing of self-assembled film and electrochemical polymerization in an aqueous monoaniline solution. The patterned microstructures of PANI were easily transferred to an adhesive tape surface, which could be applied in the area of plastic circuit application. Optical microscope, atomic force microscopy (AFM), lateral force microscopy (LFM) and X-ray photoelectron spectroscopy (XPS) were used to examine the topography and properties of patterned PANI films. Optical microscope and AFM results showed that the PANT microstructure has regular pattern and clear boundary, while LFM and XPS results implied that this microstructure was completely covered by PANI. The data suggested that the interfacial properties of the surface control the rate of electrochemical polymerization, and the polymerization rate on the modified ITO surface is higher than that on the bare ITO area. In our experiments, cyclic voltammetric method, potentiostatic method and chronopotentiometry method were employed to deposited patterned PANI films on octadecyltrichorosilane modified ITO substrate.
机译:ITO玻璃表面上的聚苯胺(PANI)微观结构是通过自组装膜的微接触印刷和在单苯胺水溶液中的电化学聚合来实现的。 PANI的图案化微结构很容易转移到胶带表面,可应用于塑料电路应用领域。使用光学显微镜,原子力显微镜(AFM),横向力显微镜(LFM)和X射线光电子能谱(XPS)来检查图案化PANI膜的形貌和性能。光学显微镜和原子力显微镜结果表明,PANT组织具有规则的图案和清晰的边界,而LFM和XPS结果表明该微观结构被PANI完全覆盖。数据表明,表面的界面性质控制着电化学聚合的速率,改性的ITO表面的聚合速率高于裸ITO区域的聚合速率。在我们的实验中,采用循环伏安法,恒电位法和计时电位法将图案化的PANI膜沉积在十八烷基三甲硅烷改性的ITO衬底上。

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