Cargando…

Morphological Electrical and Hardness Characterization of Carbon Nanotube-Reinforced Thermoplastic Polyurethane (TPU) Nanocomposite Plates

The impacts on the morphological, electrical and hardness properties of thermoplastic polyurethane (TPU) plates using multi-walled carbon nanotubes (MWCNTs) as reinforcing fillers have been investigated, using MWCNT loadings between 1 and 7 wt%. Plates of the TPU/MWCNT nanocomposites were fabricated...

Descripción completa

Detalles Bibliográficos
Autores principales: Muñoz-Chilito, José, Lara-Ramos, José A., Marín, Lorena, Machuca-Martínez, Fiderman, Correa-Aguirre, Juan P., Hidalgo-Salazar, Miguel A., García-Navarro, Serafín, Roca-Blay, Luis, Rodríguez, Luis A., Mosquera-Vargas, Edgar, Diosa, Jesús E.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10145542/
https://www.ncbi.nlm.nih.gov/pubmed/37110832
http://dx.doi.org/10.3390/molecules28083598
_version_ 1785034358711648256
author Muñoz-Chilito, José
Lara-Ramos, José A.
Marín, Lorena
Machuca-Martínez, Fiderman
Correa-Aguirre, Juan P.
Hidalgo-Salazar, Miguel A.
García-Navarro, Serafín
Roca-Blay, Luis
Rodríguez, Luis A.
Mosquera-Vargas, Edgar
Diosa, Jesús E.
author_facet Muñoz-Chilito, José
Lara-Ramos, José A.
Marín, Lorena
Machuca-Martínez, Fiderman
Correa-Aguirre, Juan P.
Hidalgo-Salazar, Miguel A.
García-Navarro, Serafín
Roca-Blay, Luis
Rodríguez, Luis A.
Mosquera-Vargas, Edgar
Diosa, Jesús E.
author_sort Muñoz-Chilito, José
collection PubMed
description The impacts on the morphological, electrical and hardness properties of thermoplastic polyurethane (TPU) plates using multi-walled carbon nanotubes (MWCNTs) as reinforcing fillers have been investigated, using MWCNT loadings between 1 and 7 wt%. Plates of the TPU/MWCNT nanocomposites were fabricated by compression molding from extruded pellets. An X-ray diffraction analysis showed that the incorporation of MWCNTs into the TPU polymer matrix increases the ordered range of the soft and hard segments. SEM images revealed that the fabrication route used here helped to obtain TPU/MWCNT nanocomposites with a uniform dispersion of the nanotubes inside the TPU matrix and promoted the creation of a conductive network that favors the electronic conduction of the composite. The potential of the impedance spectroscopy technique has been used to determine that the TPU/MWCNT plates exhibited two conduction mechanisms, percolation and tunneling conduction of electrons, and their conductivity values increase as the MWCNT loading increases. Finally, although the fabrication route induced a hardness reduction with respect to the pure TPU, the addition of MWCNT increased the Shore A hardness behavior of the TPU plates.
format Online
Article
Text
id pubmed-10145542
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-101455422023-04-29 Morphological Electrical and Hardness Characterization of Carbon Nanotube-Reinforced Thermoplastic Polyurethane (TPU) Nanocomposite Plates Muñoz-Chilito, José Lara-Ramos, José A. Marín, Lorena Machuca-Martínez, Fiderman Correa-Aguirre, Juan P. Hidalgo-Salazar, Miguel A. García-Navarro, Serafín Roca-Blay, Luis Rodríguez, Luis A. Mosquera-Vargas, Edgar Diosa, Jesús E. Molecules Article The impacts on the morphological, electrical and hardness properties of thermoplastic polyurethane (TPU) plates using multi-walled carbon nanotubes (MWCNTs) as reinforcing fillers have been investigated, using MWCNT loadings between 1 and 7 wt%. Plates of the TPU/MWCNT nanocomposites were fabricated by compression molding from extruded pellets. An X-ray diffraction analysis showed that the incorporation of MWCNTs into the TPU polymer matrix increases the ordered range of the soft and hard segments. SEM images revealed that the fabrication route used here helped to obtain TPU/MWCNT nanocomposites with a uniform dispersion of the nanotubes inside the TPU matrix and promoted the creation of a conductive network that favors the electronic conduction of the composite. The potential of the impedance spectroscopy technique has been used to determine that the TPU/MWCNT plates exhibited two conduction mechanisms, percolation and tunneling conduction of electrons, and their conductivity values increase as the MWCNT loading increases. Finally, although the fabrication route induced a hardness reduction with respect to the pure TPU, the addition of MWCNT increased the Shore A hardness behavior of the TPU plates. MDPI 2023-04-20 /pmc/articles/PMC10145542/ /pubmed/37110832 http://dx.doi.org/10.3390/molecules28083598 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Muñoz-Chilito, José
Lara-Ramos, José A.
Marín, Lorena
Machuca-Martínez, Fiderman
Correa-Aguirre, Juan P.
Hidalgo-Salazar, Miguel A.
García-Navarro, Serafín
Roca-Blay, Luis
Rodríguez, Luis A.
Mosquera-Vargas, Edgar
Diosa, Jesús E.
Morphological Electrical and Hardness Characterization of Carbon Nanotube-Reinforced Thermoplastic Polyurethane (TPU) Nanocomposite Plates
title Morphological Electrical and Hardness Characterization of Carbon Nanotube-Reinforced Thermoplastic Polyurethane (TPU) Nanocomposite Plates
title_full Morphological Electrical and Hardness Characterization of Carbon Nanotube-Reinforced Thermoplastic Polyurethane (TPU) Nanocomposite Plates
title_fullStr Morphological Electrical and Hardness Characterization of Carbon Nanotube-Reinforced Thermoplastic Polyurethane (TPU) Nanocomposite Plates
title_full_unstemmed Morphological Electrical and Hardness Characterization of Carbon Nanotube-Reinforced Thermoplastic Polyurethane (TPU) Nanocomposite Plates
title_short Morphological Electrical and Hardness Characterization of Carbon Nanotube-Reinforced Thermoplastic Polyurethane (TPU) Nanocomposite Plates
title_sort morphological electrical and hardness characterization of carbon nanotube-reinforced thermoplastic polyurethane (tpu) nanocomposite plates
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10145542/
https://www.ncbi.nlm.nih.gov/pubmed/37110832
http://dx.doi.org/10.3390/molecules28083598
work_keys_str_mv AT munozchilitojose morphologicalelectricalandhardnesscharacterizationofcarbonnanotubereinforcedthermoplasticpolyurethanetpunanocompositeplates
AT lararamosjosea morphologicalelectricalandhardnesscharacterizationofcarbonnanotubereinforcedthermoplasticpolyurethanetpunanocompositeplates
AT marinlorena morphologicalelectricalandhardnesscharacterizationofcarbonnanotubereinforcedthermoplasticpolyurethanetpunanocompositeplates
AT machucamartinezfiderman morphologicalelectricalandhardnesscharacterizationofcarbonnanotubereinforcedthermoplasticpolyurethanetpunanocompositeplates
AT correaaguirrejuanp morphologicalelectricalandhardnesscharacterizationofcarbonnanotubereinforcedthermoplasticpolyurethanetpunanocompositeplates
AT hidalgosalazarmiguela morphologicalelectricalandhardnesscharacterizationofcarbonnanotubereinforcedthermoplasticpolyurethanetpunanocompositeplates
AT garcianavarroserafin morphologicalelectricalandhardnesscharacterizationofcarbonnanotubereinforcedthermoplasticpolyurethanetpunanocompositeplates
AT rocablayluis morphologicalelectricalandhardnesscharacterizationofcarbonnanotubereinforcedthermoplasticpolyurethanetpunanocompositeplates
AT rodriguezluisa morphologicalelectricalandhardnesscharacterizationofcarbonnanotubereinforcedthermoplasticpolyurethanetpunanocompositeplates
AT mosqueravargasedgar morphologicalelectricalandhardnesscharacterizationofcarbonnanotubereinforcedthermoplasticpolyurethanetpunanocompositeplates
AT diosajesuse morphologicalelectricalandhardnesscharacterizationofcarbonnanotubereinforcedthermoplasticpolyurethanetpunanocompositeplates