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Role of Preparation Method on the Microstructure and Mechanical Properties of PPy/Ni Organic-Inorganic Hybrid Bilayer Coatings on Carbon Steel

机译:制备方法对碳钢上PPy / Ni有机-无机杂化双层涂层微观结构和力学性能的影响

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摘要

The efficacy of the conducting polymers as coating on a metallic substrate is strongly dependent on the manner how they are applied. Polypyrrole (PPy)/Ni organic-inorganic hybrid coatings were electropolymerized on commercial carbon steel (AISI 1018) by combining potentiostatic and potentiodynamic techniques. In first instance, it was analyzed the electrodeposition of PPy using a constant potential regime and cyclic voltammetry techniques evaluating different synthesis parameters such as deposition time, applied potential, and potential cycles, respectively. Thereafter, it was used a potentiostatic method to obtain PPy/Ni bilayer films. The morphological, mechanical, and adhesion properties of these films depend on the synthesis parameters. The results revealed that polypyrrole films formed by both methods provide a globular-type structure, although coatings produced by cyclic voltammetry are denser and slightly thicker than those produced potentiostatically. Ni (oxide/hydroxide) particles are capable of sealing the pores of globular PPy coatings, thus increasing the hardness of the carbon steel (CS)/PPy/Ni system. As a result of the study, we have seen that PPy/Ni bilayer films are more uniform, compact and enhanced the hardness when the PPy is obtained by cyclic voltammetry than that observed for potentiostatic approach. Specifically, when four potential cycles are used to electropolymerized pyrrole, the more convenience properties in the CS/PPy/Ni arrangement are obtained. (C) The Minerals, Metals & Materials Society and ASM International 2015
机译:导电聚合物作为在金属基材上的涂层的功效在很大程度上取决于它们的涂覆方式。通过将恒电位和恒电位技术相结合,将聚吡咯(PPy)/ Ni有机-无机杂化涂层在商用碳钢(AISI 1018)上进行电聚合。首先,使用恒电位方案和循环伏安技术分析PPy的电沉积,分别评估不同的合成参数,例如沉积时间,施加的电势和电势循环。之后,使用恒电位法获得PPy / Ni双层膜。这些薄膜的形态,机械和粘附性能取决于合成参数。结果表明,尽管通过循环伏安法制得的涂层比恒电位制得的涂层致密且略厚,但通过两种方法形成的聚吡咯膜均具有球形结构。 Ni(氧化物/氢氧化物)颗粒能够密封球形PPy涂层的孔,从而提高碳钢(CS)/ PPy / Ni系统的硬度。研究的结果表明,与通过恒电位法观察到的PPy / Ni双层薄膜相比,通过循环伏安法获得的PPy / Ni双层薄膜更均匀,致密并提高了硬度。具体地,当使用四个电势循环来电聚合吡咯时,在CS / PPy / Ni排列中获得更多的便利性质。 (C)矿物,金属和材料学会和ASM International 2015

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