Synthesis, Structure and Electrical Resistivity of Carbon Nanotubes Synthesized over Group VIII Metallocenes

The paper reports the synthesis of carbon nanotubes from ethanol over group VIII (Fe, Co, Ni) catalysts derived from corresponding metallocenes. Several unexpected cooperative effects are reported, which are never observed in the case of individual metallocenes such as the commonly used ferrocene ca...

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Main Authors: Aida R. Karaeva, Sergey A. Urvanov, Nikita V. Kazennov, Eduard B. Mitberg, Vladimir Z. Mordkovich
Format: Article
Language:English
Published: MDPI AG 2020-11-01
Series:Nanomaterials
Subjects:
Fe
Co
Ni
Online Access:https://www.mdpi.com/2079-4991/10/11/2279
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spelling doaj-173da18ce30a464c85d3336f095da1e32020-11-25T03:59:44ZengMDPI AGNanomaterials2079-49912020-11-01102279227910.3390/nano10112279Synthesis, Structure and Electrical Resistivity of Carbon Nanotubes Synthesized over Group VIII MetallocenesAida R. Karaeva0Sergey A. Urvanov1Nikita V. Kazennov2Eduard B. Mitberg3Vladimir Z. Mordkovich4Technological Institute for Superhard and Novel Carbon Materials, 7A Tsentralnaya Street, Troitsk, Moscow 108840, RussiaTechnological Institute for Superhard and Novel Carbon Materials, 7A Tsentralnaya Street, Troitsk, Moscow 108840, RussiaTechnological Institute for Superhard and Novel Carbon Materials, 7A Tsentralnaya Street, Troitsk, Moscow 108840, RussiaTechnological Institute for Superhard and Novel Carbon Materials, 7A Tsentralnaya Street, Troitsk, Moscow 108840, RussiaTechnological Institute for Superhard and Novel Carbon Materials, 7A Tsentralnaya Street, Troitsk, Moscow 108840, RussiaThe paper reports the synthesis of carbon nanotubes from ethanol over group VIII (Fe, Co, Ni) catalysts derived from corresponding metallocenes. Several unexpected cooperative effects are reported, which are never observed in the case of individual metallocenes such as the commonly used ferrocene catalyst Fe(C<sub>5</sub>H<sub>5</sub>)<sub>2</sub>. The formation of very long (up to several µm) straight monocrystal metal kernels inside the carbon nanotubes was the most interesting effect. The use of trimetal catalysts (Fe<sub>1-x-y</sub>Co<sub>x</sub>Ni<sub>y</sub>)(C<sub>5</sub>H<sub>5</sub>)<sub>2</sub> resulted in the sharp increase in the yield of carbon nanotubes. The electrical conductivity of the produced nanotubes is determined by the nature of the catalyst. The variation of individual metals in the Ni-Co-Fe leads to a drop of the electrical resistivity of nanotube samples by the order of magnitude, i.e., from 1.0 × 10<sup>−3</sup> to 1.1 × 10<sup>−5</sup> Ω∙m. A controlled change in the electrophysical properties of the nanotubes can make it possible to expand their use as fillers in composites, photothermal and tunable magnetic nanomaterials with pre-designed electrical conductivity and other electromagnetic properties.https://www.mdpi.com/2079-4991/10/11/2279carbonnanotubemetalloceneFeCoNi
collection DOAJ
language English
format Article
sources DOAJ
author Aida R. Karaeva
Sergey A. Urvanov
Nikita V. Kazennov
Eduard B. Mitberg
Vladimir Z. Mordkovich
spellingShingle Aida R. Karaeva
Sergey A. Urvanov
Nikita V. Kazennov
Eduard B. Mitberg
Vladimir Z. Mordkovich
Synthesis, Structure and Electrical Resistivity of Carbon Nanotubes Synthesized over Group VIII Metallocenes
Nanomaterials
carbon
nanotube
metallocene
Fe
Co
Ni
author_facet Aida R. Karaeva
Sergey A. Urvanov
Nikita V. Kazennov
Eduard B. Mitberg
Vladimir Z. Mordkovich
author_sort Aida R. Karaeva
title Synthesis, Structure and Electrical Resistivity of Carbon Nanotubes Synthesized over Group VIII Metallocenes
title_short Synthesis, Structure and Electrical Resistivity of Carbon Nanotubes Synthesized over Group VIII Metallocenes
title_full Synthesis, Structure and Electrical Resistivity of Carbon Nanotubes Synthesized over Group VIII Metallocenes
title_fullStr Synthesis, Structure and Electrical Resistivity of Carbon Nanotubes Synthesized over Group VIII Metallocenes
title_full_unstemmed Synthesis, Structure and Electrical Resistivity of Carbon Nanotubes Synthesized over Group VIII Metallocenes
title_sort synthesis, structure and electrical resistivity of carbon nanotubes synthesized over group viii metallocenes
publisher MDPI AG
series Nanomaterials
issn 2079-4991
publishDate 2020-11-01
description The paper reports the synthesis of carbon nanotubes from ethanol over group VIII (Fe, Co, Ni) catalysts derived from corresponding metallocenes. Several unexpected cooperative effects are reported, which are never observed in the case of individual metallocenes such as the commonly used ferrocene catalyst Fe(C<sub>5</sub>H<sub>5</sub>)<sub>2</sub>. The formation of very long (up to several µm) straight monocrystal metal kernels inside the carbon nanotubes was the most interesting effect. The use of trimetal catalysts (Fe<sub>1-x-y</sub>Co<sub>x</sub>Ni<sub>y</sub>)(C<sub>5</sub>H<sub>5</sub>)<sub>2</sub> resulted in the sharp increase in the yield of carbon nanotubes. The electrical conductivity of the produced nanotubes is determined by the nature of the catalyst. The variation of individual metals in the Ni-Co-Fe leads to a drop of the electrical resistivity of nanotube samples by the order of magnitude, i.e., from 1.0 × 10<sup>−3</sup> to 1.1 × 10<sup>−5</sup> Ω∙m. A controlled change in the electrophysical properties of the nanotubes can make it possible to expand their use as fillers in composites, photothermal and tunable magnetic nanomaterials with pre-designed electrical conductivity and other electromagnetic properties.
topic carbon
nanotube
metallocene
Fe
Co
Ni
url https://www.mdpi.com/2079-4991/10/11/2279
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