Fabrication, Functionalization, and Application of Carbon Nanotube-Reinforced Polymer Composite: An Overview
Изготовление, функционализация и применение полимерного композита, армированного углеродными нанотрубками: обзор
2021-03-26
SCID: 54.1/hjetrfed
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carbon nanotube-reinforced polymer compositescovalent functionalizationmultiwalled carbon nanotubesnon-covalent functionalizationsingle-wall carbon nanotubes
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Abstract (AI)
A novel class of carbon nanotube (CNT)-based nanomaterials has been surging since 1991 due to their noticeable mechanical and electrical properties, as well as their good electron transport properties. This is evidence that the development of CNT-reinforced polymer composites could contribute in expanding many areas of use, from energy-related devices to structural components. As a promising material with a wide range of applications, their poor solubility in aqueous and organic solvents has hindered the utilizations of CNTs. The current state of research in CNTs-both single-wall carbon nanotubes (SWCNT) and multiwalled carbon nanotube (MWCNT)-reinforced polymer composites-was reviewed in the context of the presently employed covalent and non-covalent functionalization. As such, this overview intends to provide a critical assessment of a surging class of composite materials and unveil the successful development associated with CNT-incorporated polymer composites. The mechanisms related to the mechanical, thermal, and electrical performance of CNT-reinforced polymer composites is also discussed. It is vital to understand how the addition of CNTs in a polymer composite alters the microstructure at the micro- and nano-scale, as well as how these modifications influence overall structural behavior, not only in its as fabricated form but also its functionalization techniques. The technological superiority gained with CNT addition to polymer composites may be advantageous, but scientific values are here to be critically explored for reliable, sustainable, and structural reliability in different industrial needs.
Key Findings
1
Both covalent and non-covalent functionalization strategies are reviewed for improving the incorporation and performance of SWCNT- and MWCNT-reinforced polymer composites.
2
CNT addition alters polymer-composite microstructure at micro- and nanoscale levels, thereby influencing mechanical, thermal, and electrical behavior.
3
CNT-reinforced polymer composites offer promising mechanical, electrical, and electron-transport properties for applications ranging from energy devices to structural components.
4
Poor CNT solubility in aqueous and organic solvents is a major barrier to their utilization in polymer composites.
5
Understanding structure–property mechanisms and functionalization effects is essential for achieving reliable, sustainable, and structurally robust CNT-polymer composites.
Research Object
carbon nanotube-reinforced polymer composites, including SWCNT- and MWCNT-based composites
Research Subject
the effects of covalent and non-covalent CNT functionalization and incorporation on the microstructure and mechanical, thermal, and electrical performance of polymer composites
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2021-03-26
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