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首页> 外文期刊>RSC Advances >In situ preparation and determination of electrochemical and electrochromic properties of copper phthalocyanine-polyaniline nanocomposite films
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In situ preparation and determination of electrochemical and electrochromic properties of copper phthalocyanine-polyaniline nanocomposite films

机译:原位制备和铜酞菁 - 聚苯胺纳米复合薄膜电化学和电致变色特性的测定

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摘要

Copper phthalocyanine (CuPc) films with different morphologies were electrodeposited on the surfaces of ITO electrodes. Then, in each case, a polyaniline (PANI) film was electrochemically polymerized in situ on the surface of the copper phthalocyanine film to form a CuPc-PANI composite film. The electrochemical properties of the CuPc-PANI composite film were observed to be much better than those of the film without CuPc. With the modification involving the CuPc nanowires, the composite film formed a finer particle surface and an increased interface area between the PANI and the electrolyte. Compared to the single-component PANI film, the CuPc-PANI composite film exhibited better performance with a higher optical contrast (58% at 730 nm), a faster response speed (coloring time of 1.02 s, discoloring time of 1.96 s), and better cycling stability (68.71% of the initial electrochemical activity after 500 cycles, in contrast to only about 48.02% for PANI). Moreover, the CuPc-PANI film shows a new feature that can be used as a supercapacitor (specifically a capacitance value of about 5.4 mF cm(-2) at typical currents). Our results demonstrate that the prepared CuPc-PANI composite film is one of the best candidates for multiple potential applications such as high-performance polymer electrochromic materials and supercapacitors.
机译:铜酞菁(CUPC)膜具有不同形态的薄膜在ITO电极的表面上被电沉积在ITO电极的表面上。然后,在每种情况下,在铜酞菁膜的表面上以原位电化学聚合聚苯胺(PANI)膜以形成CUPC-PANI复合膜。观察到CupC-Pani复合膜的电化学性质比没有CUPC的薄膜的电化学性能要好得多。随着涉及CUPC纳米线的修改,复合膜在PANI和电解质之间形成更细粒表面和增加的界面区域。与单组分PANI薄膜相比,CUPC-PANI复合膜具有更高的光学对比度(730nm处的58%),响应速度更快(1.02秒,1.96秒的着色时间为1.96秒),和更好的循环稳定性(500次循环后初始电化学活性的68.71%,相反,PANI的约48.02%)。此外,CUPC-PANI薄膜显示了一种可以用作超级电容器(特别是在典型电流下的电容值约5.4mF(-2)的电容值)。我们的结果表明,制备的Cupc-Pani复合膜是多种潜在应用的最佳候选者之一,例如高性能聚合物电致变色材料和超级电容器。

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    《RSC Advances》 |2019年第59期|共7页
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  • 正文语种 eng
  • 中图分类 化学;
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