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Synthesis and morphological study of graphenated carbon nanotube aerogel from grapeseed oil
by
Ramli, Irmawati
, Abdullah Ahmad Aimanuddin Amzar
, Zaidi, Muhammad Azizan
, Baqer, Abdullah Hayder
, Ismail Ismayadi
in
Aerogels
/ Carbon
/ Catalysts
/ Chemical synthesis
/ Chemical vapor deposition
/ Electrons
/ Grape oil
/ Grapeseed oil
/ Graphene
/ High resolution electron microscopy
/ Hybrids
/ Microscopy
/ Morphology
/ Multi wall carbon nanotubes
/ Nanoparticles
/ Raman spectroscopy
/ Scanning microscopy
/ Thermogravimetric analysis
/ Transmission electron microscopy
2021
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Synthesis and morphological study of graphenated carbon nanotube aerogel from grapeseed oil
by
Ramli, Irmawati
, Abdullah Ahmad Aimanuddin Amzar
, Zaidi, Muhammad Azizan
, Baqer, Abdullah Hayder
, Ismail Ismayadi
in
Aerogels
/ Carbon
/ Catalysts
/ Chemical synthesis
/ Chemical vapor deposition
/ Electrons
/ Grape oil
/ Grapeseed oil
/ Graphene
/ High resolution electron microscopy
/ Hybrids
/ Microscopy
/ Morphology
/ Multi wall carbon nanotubes
/ Nanoparticles
/ Raman spectroscopy
/ Scanning microscopy
/ Thermogravimetric analysis
/ Transmission electron microscopy
2021
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Synthesis and morphological study of graphenated carbon nanotube aerogel from grapeseed oil
by
Ramli, Irmawati
, Abdullah Ahmad Aimanuddin Amzar
, Zaidi, Muhammad Azizan
, Baqer, Abdullah Hayder
, Ismail Ismayadi
in
Aerogels
/ Carbon
/ Catalysts
/ Chemical synthesis
/ Chemical vapor deposition
/ Electrons
/ Grape oil
/ Grapeseed oil
/ Graphene
/ High resolution electron microscopy
/ Hybrids
/ Microscopy
/ Morphology
/ Multi wall carbon nanotubes
/ Nanoparticles
/ Raman spectroscopy
/ Scanning microscopy
/ Thermogravimetric analysis
/ Transmission electron microscopy
2021
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Synthesis and morphological study of graphenated carbon nanotube aerogel from grapeseed oil
Journal Article
Synthesis and morphological study of graphenated carbon nanotube aerogel from grapeseed oil
2021
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Overview
Abstract Grapeseed oil as a new source of graphenated carbon nanotube (g-CNTs) hybrids was described in this paper. Mesoporous three-dimensional (3D) g-CNT aerogel was synthesized by a floating catalyst chemical vapor deposition (FCCVD) method. The effect of the H2 gas ratio was evaluated, and the graphenated g-CNTs morphology was identified by various physico-chemical techniques, such as field-emission scanning microscopy (FESEM), high-resolution transmission electron microscopy (HRTEM), Raman spectroscopy, thermogravimetric analysis (TGA), and N2 sorption studies. Furthermore, the multi-wall carbon nanotube (MWCNT) bundles in the network were highly disordered and rounded by graphene foliate structures in which a large number of sharp edges of graphene sheets were found.
Publisher
Springer Nature B.V
Subject
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