Investigation of Polyetherimide Melt-Extruded Fibers Modified by Carbon Nanoparticles.

DSC SEM VGCF WAXS fibers mechanical properties melt-extrusion polyetherimide rheology structure

Journal

Materials (Basel, Switzerland)
ISSN: 1996-1944
Titre abrégé: Materials (Basel)
Pays: Switzerland
ID NLM: 101555929

Informations de publication

Date de publication:
27 Nov 2021
Historique:
received: 01 11 2021
revised: 20 11 2021
accepted: 25 11 2021
entrez: 10 12 2021
pubmed: 11 12 2021
medline: 11 12 2021
Statut: epublish

Résumé

The fibers based on thermoplastic partially crystalline polyetherimide R-BAPB modified by vapor grown carbon nanofibers (VGCF) were prepared by melt extrusion, exposed to orientational drawing, and crystallized. All of the samples were examined by scanning electron microscopy, X-ray scattering, and differential scanning calorimetry to study how the carbon nanofiller influences on the internal structure and crystallization behavior of the obtained R-BAPB fibers. The mechanical properties of the composite R-BAPB fibers were also determined. It was found that VGCF nanoparticles introduced into R-BAPB polyimide can act as a nucleating agent that leads, in turn, to significant changes in the composite fibers morphology as well as thermal and mechanical characteristics. VGCF are able to improve an orientation degree of the R-BAPB macromolecules along the fiber direction, accelerate crystallization rate of the polymer, and enhance the fiber stability during crystallization process.

Identifiants

pubmed: 34885406
pii: ma14237251
doi: 10.3390/ma14237251
pmc: PMC8658288
pii:
doi:

Types de publication

Journal Article

Langues

eng

Subventions

Organisme : Ministry of Science and Higher Education of the Russian Federation
ID : 075-15-2020-794

Références

Macromol Rapid Commun. 2018 Oct;39(20):e1800141
pubmed: 29873136
Polymers (Basel). 2018 Nov 10;10(11):
pubmed: 30961170
ACS Omega. 2020 May 05;5(19):10680-10686
pubmed: 32455186
Materials (Basel). 2020 Sep 26;13(19):
pubmed: 32993085

Auteurs

Elena Ivan'kova (E)

Institute of Macromolecular Compounds of Russian Academy of Sciences, V.O., Bol'shoy pr. 31, St. Petersburg 199004, Russia.

Gleb Vaganov (G)

Institute of Macromolecular Compounds of Russian Academy of Sciences, V.O., Bol'shoy pr. 31, St. Petersburg 199004, Russia.

Andrey Didenko (A)

Institute of Macromolecular Compounds of Russian Academy of Sciences, V.O., Bol'shoy pr. 31, St. Petersburg 199004, Russia.

Elena Popova (E)

Institute of Macromolecular Compounds of Russian Academy of Sciences, V.O., Bol'shoy pr. 31, St. Petersburg 199004, Russia.

Vladimir Elokhovskiy (V)

Institute of Macromolecular Compounds of Russian Academy of Sciences, V.O., Bol'shoy pr. 31, St. Petersburg 199004, Russia.

Alexander Bugrov (A)

Institute of Macromolecular Compounds of Russian Academy of Sciences, V.O., Bol'shoy pr. 31, St. Petersburg 199004, Russia.
Department of Physical Chemistry, Saint Petersburg Electrotechnical University (ETU "LETI"), ul. Professora Popova 5, St. Petersburg 197376, Russia.

Valentin Svetlichnyi (V)

Institute of Macromolecular Compounds of Russian Academy of Sciences, V.O., Bol'shoy pr. 31, St. Petersburg 199004, Russia.

Igor Kasatkin (I)

Research Centre for X-ray Diffraction Studies, Saint Petersburg State University, Universitetskaya nab. 7/9, St. Petersburg 199034, Russia.

Vladimir Yudin (V)

Institute of Macromolecular Compounds of Russian Academy of Sciences, V.O., Bol'shoy pr. 31, St. Petersburg 199004, Russia.

Classifications MeSH