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The role of unbound oligomers in the nucleation and growth of electrodeposited polypyrrole and method for preparing high strength, high conductivity films

机译:未结合的低聚物在电沉积聚吡咯的成核和生长中的作用以及制备高强度,高电导率薄膜的方法

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摘要

Polypyrrole is a material with immensely useful properties suitable for a wide range of electrochemical applications, but its development has been hindered by cumbersome manufacturing processes. Here we show that a simple modification to the standard electrochemical polymerization method produces polypyrrole films of equivalently high conductivity and superior mechanical properties in one-tenth of the polymerization time. Preparing the film as a series of electrodeposited layers with thorough solvent washing between layering was found to produce excellent quality films even when layer deposition was accelerated by high current. The washing step between the sequentially polymerized layers altered the deposition mechanism, eliminating the typical dendritic growth and generating nonporous deposits. Solvent washing was shown to reduce the concentration of oligomeric species in the near-electrode region and hinder the three-dimensional growth mechanism that occurs by deposition of secondary particles from solution. As artificial muscles, the high density sequentially polymerized films produced the highest mechanical work output yet reported for polypyrrole actuators.
机译:聚吡咯是一种具有非常有用的特性的材料,适用于广泛的电化学应用,但其制造过程受到繁琐的制造过程的阻碍。在这里,我们表明对标准电化学聚合方法的简单修改可以在十分之一的聚合时间内产生具有同等高的电导率和优异的机械性能的聚吡咯膜。发现将膜制成一系列电沉积层,并且在层间之间进行彻底的溶剂洗涤,即使在通过高电流加速层沉积的情况下,也能生产出优质的膜。顺序聚合的层之间的洗涤步骤改变了沉积机理,消除了典型的树枝状生长并产生了无孔沉积物。研究表明,溶剂洗涤可降低电极附近区域中低聚物质的浓度,并阻碍由溶液中次级颗粒沉积而产生的三维生长机理。作为人造肌肉,高密度顺序聚合膜产生了迄今为止对聚吡咯致动器所报告的最高机械功输出。

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