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Thermal Conductivity of Carbon/Boron Nitride Heteronanotube and Boron Nitride Nanotube Buckypapers: Implications for Thermal Management Composites

[Image: see text] To date, there has been limited reporting on the fabrication and properties of macroscopic sheet assemblies (specifically buckypapers) composed of carbon/boron nitride core–shell heteronanotubes (MWCNT@BNNT) or boron nitride nanotubes (BNNTs). Herein we report the synthesis of MWCN...

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Autores principales: Jones, Ruth Sang, Gonzalez-Munoz, Sergio, Griffiths, Ian, Holdway, Philip, Evers, Koen, Luanwuthi, Santamon, Maciejewska, Barbara M., Kolosov, Oleg, Grobert, Nicole
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2023
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10496026/
https://www.ncbi.nlm.nih.gov/pubmed/37706066
http://dx.doi.org/10.1021/acsanm.3c01147
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author Jones, Ruth Sang
Gonzalez-Munoz, Sergio
Griffiths, Ian
Holdway, Philip
Evers, Koen
Luanwuthi, Santamon
Maciejewska, Barbara M.
Kolosov, Oleg
Grobert, Nicole
author_facet Jones, Ruth Sang
Gonzalez-Munoz, Sergio
Griffiths, Ian
Holdway, Philip
Evers, Koen
Luanwuthi, Santamon
Maciejewska, Barbara M.
Kolosov, Oleg
Grobert, Nicole
author_sort Jones, Ruth Sang
collection PubMed
description [Image: see text] To date, there has been limited reporting on the fabrication and properties of macroscopic sheet assemblies (specifically buckypapers) composed of carbon/boron nitride core–shell heteronanotubes (MWCNT@BNNT) or boron nitride nanotubes (BNNTs). Herein we report the synthesis of MWCNT@BNNTs via a facile method involving Atmospheric Pressure Chemical Vapor Deposition (APCVD) and the safe h-BN precursor ammonia borane. These MWCNT@BNNTs were used as sacrificial templates for BNNT synthesis by thermal oxidation of the core carbon. Buckypaper fabrication was facilitated by facile sonication and filtration steps. To test the thermal conductivity properties of these new buckypapers, in the interest of thermal management applications, we have developed a novel technique of advanced scanning thermal microscopy (SThM) that we call piercing SThM (pSThM). Our measurements show a 14% increase in thermal conductivity of the MWCNT@BNNT buckypaper relative to a control multiwalled carbon nanotube (MWCNT) buckypaper. Meanwhile, our BNNT buckypaper exhibited approximately half the thermal conductivity of the MWCNT control, which we attribute to the turbostratic quality of our BNNTs. To the best of our knowledge, this work achieves the first thermal conductivity measurement of a MWCNT@BNNT buckypaper and of a BNNT buckypaper composed of BNNTs not synthesized by high energy techniques.
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spelling pubmed-104960262023-09-13 Thermal Conductivity of Carbon/Boron Nitride Heteronanotube and Boron Nitride Nanotube Buckypapers: Implications for Thermal Management Composites Jones, Ruth Sang Gonzalez-Munoz, Sergio Griffiths, Ian Holdway, Philip Evers, Koen Luanwuthi, Santamon Maciejewska, Barbara M. Kolosov, Oleg Grobert, Nicole ACS Appl Nano Mater [Image: see text] To date, there has been limited reporting on the fabrication and properties of macroscopic sheet assemblies (specifically buckypapers) composed of carbon/boron nitride core–shell heteronanotubes (MWCNT@BNNT) or boron nitride nanotubes (BNNTs). Herein we report the synthesis of MWCNT@BNNTs via a facile method involving Atmospheric Pressure Chemical Vapor Deposition (APCVD) and the safe h-BN precursor ammonia borane. These MWCNT@BNNTs were used as sacrificial templates for BNNT synthesis by thermal oxidation of the core carbon. Buckypaper fabrication was facilitated by facile sonication and filtration steps. To test the thermal conductivity properties of these new buckypapers, in the interest of thermal management applications, we have developed a novel technique of advanced scanning thermal microscopy (SThM) that we call piercing SThM (pSThM). Our measurements show a 14% increase in thermal conductivity of the MWCNT@BNNT buckypaper relative to a control multiwalled carbon nanotube (MWCNT) buckypaper. Meanwhile, our BNNT buckypaper exhibited approximately half the thermal conductivity of the MWCNT control, which we attribute to the turbostratic quality of our BNNTs. To the best of our knowledge, this work achieves the first thermal conductivity measurement of a MWCNT@BNNT buckypaper and of a BNNT buckypaper composed of BNNTs not synthesized by high energy techniques. American Chemical Society 2023-06-22 /pmc/articles/PMC10496026/ /pubmed/37706066 http://dx.doi.org/10.1021/acsanm.3c01147 Text en © 2023 The Authors. Published by American Chemical Society https://creativecommons.org/licenses/by/4.0/Permits the broadest form of re-use including for commercial purposes, provided that author attribution and integrity are maintained (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Jones, Ruth Sang
Gonzalez-Munoz, Sergio
Griffiths, Ian
Holdway, Philip
Evers, Koen
Luanwuthi, Santamon
Maciejewska, Barbara M.
Kolosov, Oleg
Grobert, Nicole
Thermal Conductivity of Carbon/Boron Nitride Heteronanotube and Boron Nitride Nanotube Buckypapers: Implications for Thermal Management Composites
title Thermal Conductivity of Carbon/Boron Nitride Heteronanotube and Boron Nitride Nanotube Buckypapers: Implications for Thermal Management Composites
title_full Thermal Conductivity of Carbon/Boron Nitride Heteronanotube and Boron Nitride Nanotube Buckypapers: Implications for Thermal Management Composites
title_fullStr Thermal Conductivity of Carbon/Boron Nitride Heteronanotube and Boron Nitride Nanotube Buckypapers: Implications for Thermal Management Composites
title_full_unstemmed Thermal Conductivity of Carbon/Boron Nitride Heteronanotube and Boron Nitride Nanotube Buckypapers: Implications for Thermal Management Composites
title_short Thermal Conductivity of Carbon/Boron Nitride Heteronanotube and Boron Nitride Nanotube Buckypapers: Implications for Thermal Management Composites
title_sort thermal conductivity of carbon/boron nitride heteronanotube and boron nitride nanotube buckypapers: implications for thermal management composites
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10496026/
https://www.ncbi.nlm.nih.gov/pubmed/37706066
http://dx.doi.org/10.1021/acsanm.3c01147
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