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Synergistic Effect of Metal Oxide and Carbon Nanoparticles on the Thermal and Mechanical Properties of Polyimide Composite Films.
Nikolaeva, Alexandra L; Bugrov, Alexander N; Sokolova, Maria P; Kuntsman, Igor V; Vlasova, Elena N; Ivan'kova, Elena M; Abalov, Ivan V; Gofman, Iosif V.
Affiliation
  • Nikolaeva AL; Institute of Macromolecular Compounds, Russian Academy of Sciences, 199004 St. Petersburg, Russia.
  • Bugrov AN; Institute of Macromolecular Compounds, Russian Academy of Sciences, 199004 St. Petersburg, Russia.
  • Sokolova MP; Department of Physical Chemistry, Saint Petersburg Electrotechnical University (ETU "LETI"), ul. Professora Popova 5, 197022 St. Petersburg, Russia.
  • Kuntsman IV; Institute of Macromolecular Compounds, Russian Academy of Sciences, 199004 St. Petersburg, Russia.
  • Vlasova EN; Institute of Macromolecular Compounds, Russian Academy of Sciences, 199004 St. Petersburg, Russia.
  • Ivan'kova EM; Institute of Macromolecular Compounds, Russian Academy of Sciences, 199004 St. Petersburg, Russia.
  • Abalov IV; Institute of Macromolecular Compounds, Russian Academy of Sciences, 199004 St. Petersburg, Russia.
  • Gofman IV; Institute of Macromolecular Compounds, Russian Academy of Sciences, 199004 St. Petersburg, Russia.
Polymers (Basel) ; 15(10)2023 May 13.
Article in En | MEDLINE | ID: mdl-37242873
In this paper, we report on novel polyimide (PI) nanocomposites filled with binary mixtures of metal oxide (either TiO2 or ZrO2) nanoparticles and nanocarbon (either carbon nanofibers (CNFs) or functionalized carbon nanotubes (CNTfs)). The structure and morphology of the materials obtained were comprehensively studied. An exhaustive investigation of their thermal and mechanical properties was performed. We revealed a synergistic effect of the nanoconstituents with regard to a number of functional characteristics of the PIs compared with single-filler nanocomposites, including thermal stability, stiffness (below and above glass transition temperature), yield point, and temperature of flowing. Moreover, the possibility of manipulating the properties of the materials by choosing a proper combination of the nanofillers was demonstrated. The results obtained can become a platform in the design of PI-based engineering materials with tailored characteristics capable of operating in extreme conditions.
Key words

Full text: 1 Collection: 01-internacional Database: MEDLINE Language: En Journal: Polymers (Basel) Year: 2023 Document type: Article Affiliation country: Rusia Country of publication: Suiza

Full text: 1 Collection: 01-internacional Database: MEDLINE Language: En Journal: Polymers (Basel) Year: 2023 Document type: Article Affiliation country: Rusia Country of publication: Suiza