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In situ preparation and determination of electrochemical and electrochromic properties of copper phthalocyanine-polyaniline nanocomposite films

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 ele...

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Autores principales: Ouyang, Mi, Hu, Xuming, Shao, Xiongchao, Chen, Lu, Li, Weijun, Bai, Ru, Zhang, Ling, Lv, Xiaojing, Tameev, Alexey, Zhang, Cheng
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9074043/
https://www.ncbi.nlm.nih.gov/pubmed/35529986
http://dx.doi.org/10.1039/c9ra06540g
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author Ouyang, Mi
Hu, Xuming
Shao, Xiongchao
Chen, Lu
Li, Weijun
Bai, Ru
Zhang, Ling
Lv, Xiaojing
Tameev, Alexey
Zhang, Cheng
author_facet Ouyang, Mi
Hu, Xuming
Shao, Xiongchao
Chen, Lu
Li, Weijun
Bai, Ru
Zhang, Ling
Lv, Xiaojing
Tameev, Alexey
Zhang, Cheng
author_sort Ouyang, Mi
collection PubMed
description 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.
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spelling pubmed-90740432022-05-06 In situ preparation and determination of electrochemical and electrochromic properties of copper phthalocyanine-polyaniline nanocomposite films Ouyang, Mi Hu, Xuming Shao, Xiongchao Chen, Lu Li, Weijun Bai, Ru Zhang, Ling Lv, Xiaojing Tameev, Alexey Zhang, Cheng RSC Adv Chemistry 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. The Royal Society of Chemistry 2019-10-25 /pmc/articles/PMC9074043/ /pubmed/35529986 http://dx.doi.org/10.1039/c9ra06540g Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Ouyang, Mi
Hu, Xuming
Shao, Xiongchao
Chen, Lu
Li, Weijun
Bai, Ru
Zhang, Ling
Lv, Xiaojing
Tameev, Alexey
Zhang, Cheng
In situ preparation and determination of electrochemical and electrochromic properties of copper phthalocyanine-polyaniline nanocomposite films
title In situ preparation and determination of electrochemical and electrochromic properties of copper phthalocyanine-polyaniline nanocomposite films
title_full In situ preparation and determination of electrochemical and electrochromic properties of copper phthalocyanine-polyaniline nanocomposite films
title_fullStr In situ preparation and determination of electrochemical and electrochromic properties of copper phthalocyanine-polyaniline nanocomposite films
title_full_unstemmed In situ preparation and determination of electrochemical and electrochromic properties of copper phthalocyanine-polyaniline nanocomposite films
title_short In situ preparation and determination of electrochemical and electrochromic properties of copper phthalocyanine-polyaniline nanocomposite films
title_sort in situ preparation and determination of electrochemical and electrochromic properties of copper phthalocyanine-polyaniline nanocomposite films
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9074043/
https://www.ncbi.nlm.nih.gov/pubmed/35529986
http://dx.doi.org/10.1039/c9ra06540g
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