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首页> 外文期刊>Bulletin of the Korean Chemical Society >Growth Processes and Morphological Evolution of Polyaniline Film During Potentiostatic Growth
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Growth Processes and Morphological Evolution of Polyaniline Film During Potentiostatic Growth

机译:聚苯胺膜在电位生长过程中的生长过程和形态学演变

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We have investigated the potentiostatic growth processes and morphological evolution of polyaniline film on an indium tin oxide (ITO) electrode. The current-time transient shows the existence of three stages in two growth regimes. As the initial formation of polyaniline is extremely fast, the current increases rapidly with time. Subsequently, the current increase is slowed down due to the decomposition reaction competes with polymerization. Polyaniline film grown rapidly on a bare ITO electrode shows a compact two-dimensional layer with a granular structure. The granules start to grow upward on the first layer, with one-dimensional growth resulting in a loosely bound and open fibrous structure. Further polymer film growth results in surface aggregates due to the increased degradation rate. Visualization of the surface morphology and the roughness of the grown film are consistent with the proposed growth processes.
机译:我们研究了在氧化铟锡(ITO)电极上聚苯胺膜的电位增长过程和形态学演变。 当前瞬态显示两个增长制度的存在三个阶段。 由于聚苯胺的初始形成非常快,因此电流随时间迅速增加。 随后,由于分解反应与聚合竞争,电流增加减慢。 在裸ITO电极上快速生长的聚苯胺膜显示出具有颗粒结构的紧凑的二维层。 颗粒开始在第一层上向上生长,具有一维生长,导致松散的粘合和开口纤维结构。 由于增加的降解速率,进一步的聚合物膜生长导致表面聚集体。 表面形态的可视化和生长薄膜的粗糙度与所提出的生长过程一致。

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