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An investigation into the polylactic acid texturization through thermomechanical processing and the improved d(33) piezoelectric outcome of the fabricated scaffolds

The bio/sensors performance has been established to be significantly affected through partially or entirely alignment of nano/microfibrous in polymeric mats. The matter of crystalline/amorphous proportion in semicrystalline polymers is another factor that can affect the application of the piezoelect...

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Autores principales: Farahani, Amirhossein, Zarei-Hanzaki, Abbas, Abedi, Hamid Reza, Haririan, Ismaeil, Akrami, Mohammad, Aalipour, Zeynab, Tayebi, Lobat
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9328748/
https://www.ncbi.nlm.nih.gov/pubmed/35903416
http://dx.doi.org/10.1016/j.jmrt.2021.11.048
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author Farahani, Amirhossein
Zarei-Hanzaki, Abbas
Abedi, Hamid Reza
Haririan, Ismaeil
Akrami, Mohammad
Aalipour, Zeynab
Tayebi, Lobat
author_facet Farahani, Amirhossein
Zarei-Hanzaki, Abbas
Abedi, Hamid Reza
Haririan, Ismaeil
Akrami, Mohammad
Aalipour, Zeynab
Tayebi, Lobat
author_sort Farahani, Amirhossein
collection PubMed
description The bio/sensors performance has been established to be significantly affected through partially or entirely alignment of nano/microfibrous in polymeric mats. The matter of crystalline/amorphous proportion in semicrystalline polymers is another factor that can affect the application of the piezoelectric patches. The present work deals with fabricating the scaffolds of micro/nanofibers through a modified electrospinning procedure. The ratio of the relevant organic and polar solvents, the beading, the degree of fiber alignment, and fiber thickness have been intentionally elaborated. An unaligned unbeaded nanofibrous mat has been fabricated after tuning the solvents to poly-lactic acid ratio. This paper, for the first time, deals with the calculation of the value of d(33) value of a commercial PLA and its improvement, it has been revealed that the d(33) piezoelectric property is improved as a consequence of the thermo-mechanical processing above the cold crystallization temperature. The applied thermo (mechanical) processing causes the structural evolution from amorphous to crystallized states. Formation of the α and α′ crystalline phases is introduced as the main responsible for the improvement of the piezoelectric property. This improvement not only is correlated with the degree of crystallinity, but also the orientation and alignment of the crystallites is known to be influential. In this respect, the complex helical chain structural evolution of poly-lactic acid has been analyzed through Herman's orientation function. It has been found that, besides the characterized disorder-to-order phase transformation, the C=O branched out dipoles interactions significantly affects by the texturization of the aligned polymeric chains in the direction of the electrospinning which is known as the main factor to promote the piezoelectric property of processed mat.
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spelling pubmed-93287482022-07-27 An investigation into the polylactic acid texturization through thermomechanical processing and the improved d(33) piezoelectric outcome of the fabricated scaffolds Farahani, Amirhossein Zarei-Hanzaki, Abbas Abedi, Hamid Reza Haririan, Ismaeil Akrami, Mohammad Aalipour, Zeynab Tayebi, Lobat J Mater Res Technol Article The bio/sensors performance has been established to be significantly affected through partially or entirely alignment of nano/microfibrous in polymeric mats. The matter of crystalline/amorphous proportion in semicrystalline polymers is another factor that can affect the application of the piezoelectric patches. The present work deals with fabricating the scaffolds of micro/nanofibers through a modified electrospinning procedure. The ratio of the relevant organic and polar solvents, the beading, the degree of fiber alignment, and fiber thickness have been intentionally elaborated. An unaligned unbeaded nanofibrous mat has been fabricated after tuning the solvents to poly-lactic acid ratio. This paper, for the first time, deals with the calculation of the value of d(33) value of a commercial PLA and its improvement, it has been revealed that the d(33) piezoelectric property is improved as a consequence of the thermo-mechanical processing above the cold crystallization temperature. The applied thermo (mechanical) processing causes the structural evolution from amorphous to crystallized states. Formation of the α and α′ crystalline phases is introduced as the main responsible for the improvement of the piezoelectric property. This improvement not only is correlated with the degree of crystallinity, but also the orientation and alignment of the crystallites is known to be influential. In this respect, the complex helical chain structural evolution of poly-lactic acid has been analyzed through Herman's orientation function. It has been found that, besides the characterized disorder-to-order phase transformation, the C=O branched out dipoles interactions significantly affects by the texturization of the aligned polymeric chains in the direction of the electrospinning which is known as the main factor to promote the piezoelectric property of processed mat. 2021 2021-11-20 /pmc/articles/PMC9328748/ /pubmed/35903416 http://dx.doi.org/10.1016/j.jmrt.2021.11.048 Text en https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/ (https://creativecommons.org/licenses/by-nc-nd/4.0/) ).
spellingShingle Article
Farahani, Amirhossein
Zarei-Hanzaki, Abbas
Abedi, Hamid Reza
Haririan, Ismaeil
Akrami, Mohammad
Aalipour, Zeynab
Tayebi, Lobat
An investigation into the polylactic acid texturization through thermomechanical processing and the improved d(33) piezoelectric outcome of the fabricated scaffolds
title An investigation into the polylactic acid texturization through thermomechanical processing and the improved d(33) piezoelectric outcome of the fabricated scaffolds
title_full An investigation into the polylactic acid texturization through thermomechanical processing and the improved d(33) piezoelectric outcome of the fabricated scaffolds
title_fullStr An investigation into the polylactic acid texturization through thermomechanical processing and the improved d(33) piezoelectric outcome of the fabricated scaffolds
title_full_unstemmed An investigation into the polylactic acid texturization through thermomechanical processing and the improved d(33) piezoelectric outcome of the fabricated scaffolds
title_short An investigation into the polylactic acid texturization through thermomechanical processing and the improved d(33) piezoelectric outcome of the fabricated scaffolds
title_sort investigation into the polylactic acid texturization through thermomechanical processing and the improved d(33) piezoelectric outcome of the fabricated scaffolds
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9328748/
https://www.ncbi.nlm.nih.gov/pubmed/35903416
http://dx.doi.org/10.1016/j.jmrt.2021.11.048
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