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An investigation into the nucleation and growth of an electropolymerized polypyrrole coating on a 316L stainless steel surface

机译:316L不锈钢表面电聚合聚吡咯涂层的形核与生长研究

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Polypyrrole is one of the most important conductive polymers, and has been extensively investigated for potential application, in batteries, solar cells and electronic devices. Although a large volume of research has been conducted on polypyrrole, the nucleation and growth mechanisms of electropolymerized polypyrrole still are not completely understood. In this study, the nucleation and growth mechanisms of polypyrrole coated on a 316L stainless steel surface were investigated using current-time transient measurements together with optical microscopy and atomic force microscopy. It was found that the nucleation and growth behavior of polypyrrole on SS316L could be divided into three stages. The first stage is the incubation period. The second stage is a combination of instantaneous nucleation and 2-dimensional growth and instantaneous nucleation and 3-dimensional growth. The third stage is a combination of instantaneous nucleation and 3-dimensional growth and progressive nucleation and 3-dimensional growth. Different surface morphologies are produced at different coating potentials. The peak current time, and the width of the peak current density, decreased at higher potentials because of severe oxidation of the polypyrrole.
机译:聚吡咯是最重要的导电聚合物之一,已经广泛研究了其在电池,太阳能电池和电子设备中的潜在应用。尽管已经对聚吡咯进行了大量研究,但是电聚合聚吡咯的成核和生长机理仍未完全理解。在这项研究中,使用电流-瞬态测量以及光学显微镜和原子力显微镜研究了涂覆在316L不锈钢表面上的聚吡咯的形核和生长机理。发现聚吡咯在SS316L上的成核和生长行为可以分为三个阶段。第一阶段是潜伏期。第二阶段是瞬时成核和二维生长以及瞬时成核和3维生长的组合。第三阶段是瞬时成核和3维生长以及渐进成核和3维生长的结合。在不同的涂层电位下会产生不同的表面形态。由于聚吡咯的严重氧化,在较高电势下,峰值电流时间和峰值电流密度的宽度减小。

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