Skip to search boxSkip to navigationSkip to main content

Thermomechanical properties of multifunctional polymer hybrid nanocomposites based on carbon nanotubes and nanosilica

  • Bruno Milton Oliveira Silva
    ,
  • Nathália Maria Moraes Fernandes
    ,
  • Juliano Martins Barbosa
    ,
  • Gabriel Matheus Pinto
    ,
  • Marcos Antônio Gimenes Benega
    ,
  • Universidade Presbiteriana Mackenzie
    ,
  • Mackenzie Presbyterian Institute
    ,
  • University of Texas Rio Grande Valley
Research Output:
Contribution to journal
Article
Peer-review

Publication metrics

Metrics

SciVal
Citations
6
SciVal
FWCI
0.63
SciVal
Author count
8
SciVal
Paper percentile
58
Scopus
Citations

Abstract

Nanocomposites containing low wt% of oxidized multi-walled carbon nanotubes (MWCNT-OXI), nanosilica (NS), and its hybrid (MWCNT-OXI/NS) in epoxy resin were produced and evaluated. The used nanoparticles were studied by scanning electron microscopy (SEM), thermogravimetric analysis (TGA), and Raman spectroscopy while the nanocomposites were investigated in relation to its morphology, thermal, and mechanical properties. The results demonstrated significant improvements in the storage modulus (E′), glass transition temperature (Tg), and cross link density (CD), for the produced nanocomposites. Increases in thermal conductivity (TC) of up to 85% at 90°C were observed for the nanocomposites containing 1.0 wt% of the hybrid MWCNT-OXI + NS nanofiller, when compared with neat polymer. It was also verified increases in the resistance to plastic deformation for the nanocomposites, maintained the polymer thermal stability with the addition of these nanoparticles. Finally, the use of MWCNT-OXI and NS, combined or not, significantly improved the thermal and mechanical properties of polymer, showing multifunctional characteristics for the produced nanocomposites.

Publication Information

Output type

Research Output:
Contribution to journal
Article
Peer-review

Original language

English

Article number

e56054

Journal (Volume, Issue Number)

Journal of Applied Polymer Science (Volume 141, Issue 41)

Publication milestones

  • Accepted/In press - 2024
  • Published - 05/11/2024

Publication status

Published - 05/11/2024

ISSN

0021-8995

Publication IDs

  • Scopus: 85200503823

Funding Details

The authors would like to thank the support provided by Mackenzie Research Fund (Mack-Pesquisa, Project No. 231015, MACK-0012510). Programa Institucional de Internacionaliza\u00E7\u00E3o\u2013PrInt\u2014CAPES\u2013Funda\u00E7\u00E3o Coordena\u00E7\u00E3o de Aperfei\u00E7oamento de Pessoal de N\u00EDvel Superior\u2014CAPES. Process Number: 88887.717575/2022-00. Conselho Nacional de Desenvolvimento Cient\u00EDfico e Tecnol\u00F3gico (CNPq, Project Number: 305109/2022-7), National Institute of Science and Technology for Rheology of Complex Materials Applied to Advanced Technologies (INCT-Rhe9) grant 406765/2022-7, Funda\u00E7\u00E3o de Amparo \u00E0 Pesquisa do Estado de S\u00E3o Paulo (FAPESP, Project number 2020/11496-0), and Olin Corporation Brazil. The authors would like to thank the support provided by Mackenzie Research Fund (Mack\u2010Pesquisa, Project No. 231015, MACK\u20100012510). Programa Institucional de Internacionaliza\u00E7\u00E3o\u2013PrInt\u2014CAPES\u2013Funda\u00E7\u00E3o Coordena\u00E7\u00E3o de Aperfei\u00E7oamento de Pessoal de N\u00EDvel Superior\u2014CAPES. Process Number: 88887.717575/2022\u201000. Conselho Nacional de Desenvolvimento Cient\u00EDfico e Tecnol\u00F3gico (CNPq, Project Number: 305109/2022\u20107), National Institute of Science and Technology for Rheology of Complex Materials Applied to Advanced Technologies (INCT\u2010Rhe9) grant 406765/2022\u20107, Funda\u00E7\u00E3o de Amparo \u00E0 Pesquisa do Estado de S\u00E3o Paulo (FAPESP, Project number 2020/11496\u20100), and Olin Corporation Brazil.
FundersFunding numbers
Olin Corporation Brazil
-
CAPES
88887.717575/2022-00
FAPESP
2020/11496‐0
Mackenzie Research Fund
231015, MACK‐0012510
National Institute of Science and Technology for Rheology of Complex Materials Applied to Advanced Technologies
INCT‐Rhe9, 406765/2022‐7
CNPq
305109/2022‐7