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Advanced Electrode Coatings Based on Poly-N-Phenylanthranilic Acid Composites with Reduced Graphene Oxide for Supercapacitors

The electrochemical behavior of new electrode materials based on poly-N-phenylanthranilic acid (P-N-PAA) composites with reduced graphene oxide (RGO) was studied for the first time. Two methods of obtaining RGO/P-N-PAA composites were suggested. Hybrid materials were synthesized via in situ oxidativ...

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Autores principales: Ozkan, Sveta Zhiraslanovna, Tkachenko, Lyudmila Ivanovna, Efimov, Oleg Nikolaevich, Karpacheva, Galina Petrovna, Nikolaeva, Galina Vasilevna, Kostev, Aleksandr Ivanovich, Dremova, Nadejda Nikolaevna, Kabachkov, Evgeny Nikolaevich
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10145564/
https://www.ncbi.nlm.nih.gov/pubmed/37112043
http://dx.doi.org/10.3390/polym15081896
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author Ozkan, Sveta Zhiraslanovna
Tkachenko, Lyudmila Ivanovna
Efimov, Oleg Nikolaevich
Karpacheva, Galina Petrovna
Nikolaeva, Galina Vasilevna
Kostev, Aleksandr Ivanovich
Dremova, Nadejda Nikolaevna
Kabachkov, Evgeny Nikolaevich
author_facet Ozkan, Sveta Zhiraslanovna
Tkachenko, Lyudmila Ivanovna
Efimov, Oleg Nikolaevich
Karpacheva, Galina Petrovna
Nikolaeva, Galina Vasilevna
Kostev, Aleksandr Ivanovich
Dremova, Nadejda Nikolaevna
Kabachkov, Evgeny Nikolaevich
author_sort Ozkan, Sveta Zhiraslanovna
collection PubMed
description The electrochemical behavior of new electrode materials based on poly-N-phenylanthranilic acid (P-N-PAA) composites with reduced graphene oxide (RGO) was studied for the first time. Two methods of obtaining RGO/P-N-PAA composites were suggested. Hybrid materials were synthesized via in situ oxidative polymerization of N-phenylanthranilic acid (N-PAA) in the presence of graphene oxide (GO) (RGO/P-N-PAA-1), as well as from a P-N-PAA solution in DMF containing GO (RGO/P-N-PAA-2). GO post-reduction in the RGO/P-N-PAA composites was carried out under IR heating. Hybrid electrodes are electroactive layers of RGO/P-N-PAA composites stable suspensions in formic acid (FA) deposited on the glassy carbon (GC) and anodized graphite foil (AGF) surfaces. The roughened surface of the AGF flexible strips provides good adhesion of the electroactive coatings. Specific electrochemical capacitances of AGF-based electrodes depend on the method for the production of electroactive coatings and reach 268, 184, 111 F∙g(−1) (RGO/P-N-PAA-1) and 407, 321, 255 F∙g(−1) (RGO/P-N-PAA-2.1) at 0.5, 1.5, 3.0 mA·cm(−2) in an aprotic electrolyte. Specific weight capacitance values of IR-heated composite coatings decrease as compared to capacitance values of primer coatings and amount to 216, 145, 78 F∙g(−1) (RGO/P-N-PAA-1(IR)) and 377, 291, 200 F∙g(−1) (RGO/P-N-PAA-2.1(IR)). With a decrease in the weight of the applied coating, the specific electrochemical capacitance of the electrodes increases to 752, 524, 329 F∙g(−1) (AGF/RGO/P-N-PAA-2.1) and 691, 455, 255 F∙g(−1) (AGF/RGO/P-N-PAA-1(IR)).
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spelling pubmed-101455642023-04-29 Advanced Electrode Coatings Based on Poly-N-Phenylanthranilic Acid Composites with Reduced Graphene Oxide for Supercapacitors Ozkan, Sveta Zhiraslanovna Tkachenko, Lyudmila Ivanovna Efimov, Oleg Nikolaevich Karpacheva, Galina Petrovna Nikolaeva, Galina Vasilevna Kostev, Aleksandr Ivanovich Dremova, Nadejda Nikolaevna Kabachkov, Evgeny Nikolaevich Polymers (Basel) Article The electrochemical behavior of new electrode materials based on poly-N-phenylanthranilic acid (P-N-PAA) composites with reduced graphene oxide (RGO) was studied for the first time. Two methods of obtaining RGO/P-N-PAA composites were suggested. Hybrid materials were synthesized via in situ oxidative polymerization of N-phenylanthranilic acid (N-PAA) in the presence of graphene oxide (GO) (RGO/P-N-PAA-1), as well as from a P-N-PAA solution in DMF containing GO (RGO/P-N-PAA-2). GO post-reduction in the RGO/P-N-PAA composites was carried out under IR heating. Hybrid electrodes are electroactive layers of RGO/P-N-PAA composites stable suspensions in formic acid (FA) deposited on the glassy carbon (GC) and anodized graphite foil (AGF) surfaces. The roughened surface of the AGF flexible strips provides good adhesion of the electroactive coatings. Specific electrochemical capacitances of AGF-based electrodes depend on the method for the production of electroactive coatings and reach 268, 184, 111 F∙g(−1) (RGO/P-N-PAA-1) and 407, 321, 255 F∙g(−1) (RGO/P-N-PAA-2.1) at 0.5, 1.5, 3.0 mA·cm(−2) in an aprotic electrolyte. Specific weight capacitance values of IR-heated composite coatings decrease as compared to capacitance values of primer coatings and amount to 216, 145, 78 F∙g(−1) (RGO/P-N-PAA-1(IR)) and 377, 291, 200 F∙g(−1) (RGO/P-N-PAA-2.1(IR)). With a decrease in the weight of the applied coating, the specific electrochemical capacitance of the electrodes increases to 752, 524, 329 F∙g(−1) (AGF/RGO/P-N-PAA-2.1) and 691, 455, 255 F∙g(−1) (AGF/RGO/P-N-PAA-1(IR)). MDPI 2023-04-15 /pmc/articles/PMC10145564/ /pubmed/37112043 http://dx.doi.org/10.3390/polym15081896 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Ozkan, Sveta Zhiraslanovna
Tkachenko, Lyudmila Ivanovna
Efimov, Oleg Nikolaevich
Karpacheva, Galina Petrovna
Nikolaeva, Galina Vasilevna
Kostev, Aleksandr Ivanovich
Dremova, Nadejda Nikolaevna
Kabachkov, Evgeny Nikolaevich
Advanced Electrode Coatings Based on Poly-N-Phenylanthranilic Acid Composites with Reduced Graphene Oxide for Supercapacitors
title Advanced Electrode Coatings Based on Poly-N-Phenylanthranilic Acid Composites with Reduced Graphene Oxide for Supercapacitors
title_full Advanced Electrode Coatings Based on Poly-N-Phenylanthranilic Acid Composites with Reduced Graphene Oxide for Supercapacitors
title_fullStr Advanced Electrode Coatings Based on Poly-N-Phenylanthranilic Acid Composites with Reduced Graphene Oxide for Supercapacitors
title_full_unstemmed Advanced Electrode Coatings Based on Poly-N-Phenylanthranilic Acid Composites with Reduced Graphene Oxide for Supercapacitors
title_short Advanced Electrode Coatings Based on Poly-N-Phenylanthranilic Acid Composites with Reduced Graphene Oxide for Supercapacitors
title_sort advanced electrode coatings based on poly-n-phenylanthranilic acid composites with reduced graphene oxide for supercapacitors
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10145564/
https://www.ncbi.nlm.nih.gov/pubmed/37112043
http://dx.doi.org/10.3390/polym15081896
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