Sustainable Development of Carbon Nanocomposites: Synthesis and Classification for Environmental Remediation

Composite materials with carbon nanotube and graphene attachments have been regarded as promising prospects. Carbon nanocomposites have gained considerable interest in different fields including biomedical applications due to its exceptional structural dimensions and outstanding mechanical, electric...

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Main Authors: Dhinakaran Veeman, M. Varsha Shree, P. Sureshkumar, T. Jagadeesha, L. Natrayan, M. Ravichandran, Prabhu Paramasivam
Format: Article
Language:English
Published: Hindawi Limited 2021-01-01
Series:Journal of Nanomaterials
Online Access:http://dx.doi.org/10.1155/2021/5840645
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spelling doaj-b5d7d2af8f3a4f91a7273b20650f51352021-10-04T01:57:23ZengHindawi LimitedJournal of Nanomaterials1687-41292021-01-01202110.1155/2021/5840645Sustainable Development of Carbon Nanocomposites: Synthesis and Classification for Environmental RemediationDhinakaran Veeman0M. Varsha Shree1P. Sureshkumar2T. Jagadeesha3L. Natrayan4M. Ravichandran5Prabhu Paramasivam6Centre for Additive ManufacturingCentre for Additive ManufacturingDepartment of Mechanical EngineeringDepartment of Mechanical EngineeringDepartment of Mechanical EngineeringDepartment of Mechanical EngineeringDepartment of Mechanical EngineeringComposite materials with carbon nanotube and graphene attachments have been regarded as promising prospects. Carbon nanocomposites have gained considerable interest in different fields including biomedical applications due to its exceptional structural dimensions and outstanding mechanical, electrical, thermal, optical, and chemical characteristics. The significant advances made in carbon nanocomposite over past years along with the discovery of new nanocomposite processing technologies to improvise the functional impact of nanotube and graphene composites by providing proper methods of synthesis and improving the production of diverse composite based on carbon nanomaterials are discussed. Carbon nanocomposites are applied in various fields such as aviation, batteries, chemical industry, fuel cell, optics, power generation, space, solar hydrogen, sensors, and thermoelectric devices. The recent design, fabrication, characteristics, and applications of carbon nanocomposites such as active carbon, carbon black, graphene, nanodiamonds, and carbon nanotubes are explained in detail in this research. It is found that unlike traditional fiber composites, Van der Waals force interfacial compounds have an important effect on the mechanical performance of carbon nanomaterial-based composites.http://dx.doi.org/10.1155/2021/5840645
collection DOAJ
language English
format Article
sources DOAJ
author Dhinakaran Veeman
M. Varsha Shree
P. Sureshkumar
T. Jagadeesha
L. Natrayan
M. Ravichandran
Prabhu Paramasivam
spellingShingle Dhinakaran Veeman
M. Varsha Shree
P. Sureshkumar
T. Jagadeesha
L. Natrayan
M. Ravichandran
Prabhu Paramasivam
Sustainable Development of Carbon Nanocomposites: Synthesis and Classification for Environmental Remediation
Journal of Nanomaterials
author_facet Dhinakaran Veeman
M. Varsha Shree
P. Sureshkumar
T. Jagadeesha
L. Natrayan
M. Ravichandran
Prabhu Paramasivam
author_sort Dhinakaran Veeman
title Sustainable Development of Carbon Nanocomposites: Synthesis and Classification for Environmental Remediation
title_short Sustainable Development of Carbon Nanocomposites: Synthesis and Classification for Environmental Remediation
title_full Sustainable Development of Carbon Nanocomposites: Synthesis and Classification for Environmental Remediation
title_fullStr Sustainable Development of Carbon Nanocomposites: Synthesis and Classification for Environmental Remediation
title_full_unstemmed Sustainable Development of Carbon Nanocomposites: Synthesis and Classification for Environmental Remediation
title_sort sustainable development of carbon nanocomposites: synthesis and classification for environmental remediation
publisher Hindawi Limited
series Journal of Nanomaterials
issn 1687-4129
publishDate 2021-01-01
description Composite materials with carbon nanotube and graphene attachments have been regarded as promising prospects. Carbon nanocomposites have gained considerable interest in different fields including biomedical applications due to its exceptional structural dimensions and outstanding mechanical, electrical, thermal, optical, and chemical characteristics. The significant advances made in carbon nanocomposite over past years along with the discovery of new nanocomposite processing technologies to improvise the functional impact of nanotube and graphene composites by providing proper methods of synthesis and improving the production of diverse composite based on carbon nanomaterials are discussed. Carbon nanocomposites are applied in various fields such as aviation, batteries, chemical industry, fuel cell, optics, power generation, space, solar hydrogen, sensors, and thermoelectric devices. The recent design, fabrication, characteristics, and applications of carbon nanocomposites such as active carbon, carbon black, graphene, nanodiamonds, and carbon nanotubes are explained in detail in this research. It is found that unlike traditional fiber composites, Van der Waals force interfacial compounds have an important effect on the mechanical performance of carbon nanomaterial-based composites.
url http://dx.doi.org/10.1155/2021/5840645
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