Key Role of the Dispersion of Carbon Nanotubes (CNTs) within Epoxy Networks on their Ability to Release
Autor: | Luana Golanski, Jean-François Gérard, Maxime Pras, Guilhem Quintard, Jannick Duchet-Rumeau |
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Jazyk: | angličtina |
Rok vydání: | 2020 |
Předmět: |
Materials science
Polymers and Plastics epoxy networks 02 engineering and technology Carbon nanotube 010501 environmental sciences 01 natural sciences Article law.invention lcsh:QD241-441 symbols.namesake releasing Rheology lcsh:Organic chemistry law Composite material carbon nanotube 0105 earth and related environmental sciences chemistry.chemical_classification Nanocomposite General Chemistry Polymer Epoxy 021001 nanoscience & nanotechnology chemistry Polymerization Agglomerate visual_art symbols visual_art.visual_art_medium 0210 nano-technology Raman spectroscopy |
Zdroj: | Polymers Volume 12 Issue 11 Polymers, Vol 12, Iss 2530, p 2530 (2020) |
ISSN: | 2073-4360 |
DOI: | 10.3390/polym12112530 |
Popis: | Carbon nanotube (CNT)-reinforced nanocomposites represent a unique opportunity in terms of designing advanced materials with mechanical reinforcement and improvements in the electrical and thermal conductivities. However, the toxic effects of these composites on human health have been studied, and very soon, some regulations on CNTs and on composites based on CNTs will be enacted. That is why the release of CNTs during the nanocomposite lifecycle must be controlled. As the releasing depends on the interfacial strength that is stronger between CNTs and polymers compared to CNTs in a CNT agglomerate, two dispersion states&mdash one poorly dispersed versus another well dispersed&mdash are generated and finely described. So, the main aim of this study is to check if the CNT dispersion state has an influence on the CNT releasing potential in the nanocomposite. To well tailor and characterize the CNT dispersion state in the polymer matrix, electronic microscopies (SEM and TEM) and also rheological analysis are carried out to identify whether CNTs are isolated, in bundles, or in agglomerates. When the dispersion state is known and controlled, its influence on the polymerization kinetic and on mechanical properties is discussed. It appears clearly that in the case of a good dispersion state, strong interfaces are generated, linking the isolated nanotubes with the polymer, whereas the CNT cohesion in an agglomerate seems much more weak, and it does not provide any improvement to the polymer matrix. Raman spectroscopy is relevant to analyze the interfacial properties and allows the relationship with the releasing ability of nanocomposites i.e., CNTs poorly dispersed in the matrix are more readily released when compared to well-dispersed nanocomposites. The tribological tests confirm from released particles granulometry and observations that a CNT dispersion state sufficiently achieved in the nanocomposite avoids single CNT releasing under those solicitations. |
Databáze: | OpenAIRE |
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