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Mendeleev Communications, 2020, Volume 30, Issue 5, Pages 624–626
DOI: https://doi.org/10.1016/j.mencom.2020.09.024
(Mi mendc1273)
 

This article is cited in 9 scientific papers (total in 9 papers)

Communications

Effect of metal phthalocyanines on the synthesis and physicochemical properties of polyaniline

A. N. Andriianovaa, Yu. N. Biglovab, A. G. Mustafinab

a Ufa Institute of Chemistry, Ufa Federal Research Centre of the Russian Academy of Sciences, Ufa, Russian Federation
b Department of Chemistry, Bashkir State University, Ufa, Russian Federation
Full-text PDF (489 kB) Citations (9)
Abstract: The polymerization of aniline in the presence of metal phthalocyanines was accomplished and the effect of the metal complexes on the physicochemical properties of polyaniline was examined based on UV-visible spectra, cyclic voltammograms, morphology and conductivity of the polymers. The formation of polyaniline in the presence of metal phthalocyanines led to an increase in polymer particle sizes and to a slightly higher conductivity of the samples, as compared to those of the initial polyaniline.
Keywords: polyaniline, catalysis, metal phthalocyanines, physical properties.
Document Type: Article
Language: English
Supplementary materials:
Supplementary_data_1.pdf (121.4 Kb)


Citation: A. N. Andriianova, Yu. N. Biglova, A. G. Mustafin, “Effect of metal phthalocyanines on the synthesis and physicochemical properties of polyaniline”, Mendeleev Commun., 30:5 (2020), 624–626
Linking options:
  • https://www.mathnet.ru/eng/mendc1273
  • https://www.mathnet.ru/eng/mendc/v30/i5/p624
  • This publication is cited in the following 9 articles:
    1. Youcef Hattab, Nacera Benharrats, “New Simulation Methodology in Critical Behavior of the Doping Concentration and Conductivity Measurement of Synthesized Polyaniline”, Journal of Macromolecular Science, Part B, 2024, 1  crossref
    2. Timur T. Sadykov, Ismail A. Massalimov, Akhat G. Mustafin, “Synthesis and physico-chemical properties of composites based on polyaniline and nanosized sulfur”, Polym. Bull., 81:3 (2024), 2757  crossref
    3. A. F. A. Rahman, Agus Arsad, Nur Qistina Aneesa Mohd Rastam, Muhammad Abbas Ahmad Zaini, Noreman Ismail, “Enhancing multifarious properties of polyaniline nanocomposites through metal oxide incorporation”, Res Chem Intermed, 50:8 (2024), 3769  crossref
    4. Yanbing Yin, Xueli Zhang, Bei Jiang, Zhou Wang, Yongming Feng, Xueying Li, “Catalytic degradation of rhodamine B by α-DMACoPc/TiO2/MIL-101 (Fe) enhanced catalytic system”, J Nanopart Res, 26:9 (2024)  crossref
    5. Oxana Gribkova, Varvara Kabanova, Alexey Yagodin, Aleksey Averin, Maria Teplonogova, Alexander Martynov, Alexander Nekrasov, “Templating Effect of Water-Soluble Anionic Phthalocyaninate on the Electropolymerization of 3,4-Ethylenedioxythiophene”, Polymers, 15:8 (2023), 1854  crossref
    6. Yanbing Yin, Zhaosong Xin, Guopeng Xu, Yang Liu, “A new type of dual-nuclear binary composite catalyst BiCoPc/MIL-100(Fe) for synergistic photocatalytic degradation of dyes”, Journal of Coordination Chemistry, 74:15 (2021), 2473  crossref
    7. Juan Carlos Carranza-Cruz, Ernesto Rivera, Guillermo Santana, Sonia Martínez-Gallegos, Javier Illescas, “Synthesis of polyaniline (PANI) through chemical oxidation for its preparation in thin films”, MRS Advances, 6:43-44 (2021), 965  crossref
    8. M. Gandara, C. Dalmolin, E.S. Gonçalves, “Physicochemical interactions between polyaniline and graphene oxide: the reasons for the stability of their chemical structure and thermal properties”, Materials Today Chemistry, 22 (2021), 100627  crossref
    9. Yanbing Yin, Zhaosong Xin, Hang Yang, Guopeng Xu, Yang Liu, Xiaolong LI, “Synthesis of a 2,4-DcCoPc/MIL-101(Fe) composite and catalytic oxidation of styrene to benzaldehyde”, Journal of Coordination Chemistry, 74:9-10 (2021), 1584  crossref
    Citing articles in Google Scholar: Russian citations, English citations
    Related articles in Google Scholar: Russian articles, English articles
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