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Polyimide film with low thermal expansion and high transparency by self-enhancement of polyimide/SiC nanofibers net

A facile approach to synthesize a polyimide (PI) film with enhanced dimensional stability, a high mechanical property and optical transparency is presented by embedding the partial imidized PI/SiC nanofiber-net in a poly(amic acid) (PAA) solution, followed by removing the solvent and imidization of...

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Autores principales: Liu, Feiyan, Liu, Zhihong, Gao, Shuyu, You, Qingliang, Zou, Liyong, Chen, Jia, Liu, Jiyan, Liu, Xueqing
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9080613/
https://www.ncbi.nlm.nih.gov/pubmed/35539682
http://dx.doi.org/10.1039/c8ra02479k
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author Liu, Feiyan
Liu, Zhihong
Gao, Shuyu
You, Qingliang
Zou, Liyong
Chen, Jia
Liu, Jiyan
Liu, Xueqing
author_facet Liu, Feiyan
Liu, Zhihong
Gao, Shuyu
You, Qingliang
Zou, Liyong
Chen, Jia
Liu, Jiyan
Liu, Xueqing
author_sort Liu, Feiyan
collection PubMed
description A facile approach to synthesize a polyimide (PI) film with enhanced dimensional stability, a high mechanical property and optical transparency is presented by embedding the partial imidized PI/SiC nanofiber-net in a poly(amic acid) (PAA) solution, followed by removing the solvent and imidization of the PAA. The nanofiber-network self-filled PI film demonstrates a much lower thermal expansion coefficient (CTE), an excellent mechanical property and high transparency retention in comparison to the film fabricated by solution cast. When the SiC content is 6 wt% in PI/SiC nanofibers, the CTE values for the PI film containing 25 wt% PI/SiC nanofibers are 2.80 times lower than the solution cast PI/SiC film. The tensile strength and modulus for the PI/SiC fiber filled film are also improved by 159% and 91% respectively in comparison to the solution cast SiC/PI film. In addition, the PI/SiC nanofiber-network filled PI film exhibits a high optic transparency. The significant improvement in aforementioned properties is contributed to by the long and continuous nanonetwork which acts as a frame to maintain the stable dimension and endow the film with high mechanical properties. Moreover, the nanosized SiC particles were constricted within the nano-fiber to avoid light scattering, so the high transparency of the film was retained.
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spelling pubmed-90806132022-05-09 Polyimide film with low thermal expansion and high transparency by self-enhancement of polyimide/SiC nanofibers net Liu, Feiyan Liu, Zhihong Gao, Shuyu You, Qingliang Zou, Liyong Chen, Jia Liu, Jiyan Liu, Xueqing RSC Adv Chemistry A facile approach to synthesize a polyimide (PI) film with enhanced dimensional stability, a high mechanical property and optical transparency is presented by embedding the partial imidized PI/SiC nanofiber-net in a poly(amic acid) (PAA) solution, followed by removing the solvent and imidization of the PAA. The nanofiber-network self-filled PI film demonstrates a much lower thermal expansion coefficient (CTE), an excellent mechanical property and high transparency retention in comparison to the film fabricated by solution cast. When the SiC content is 6 wt% in PI/SiC nanofibers, the CTE values for the PI film containing 25 wt% PI/SiC nanofibers are 2.80 times lower than the solution cast PI/SiC film. The tensile strength and modulus for the PI/SiC fiber filled film are also improved by 159% and 91% respectively in comparison to the solution cast SiC/PI film. In addition, the PI/SiC nanofiber-network filled PI film exhibits a high optic transparency. The significant improvement in aforementioned properties is contributed to by the long and continuous nanonetwork which acts as a frame to maintain the stable dimension and endow the film with high mechanical properties. Moreover, the nanosized SiC particles were constricted within the nano-fiber to avoid light scattering, so the high transparency of the film was retained. The Royal Society of Chemistry 2018-05-23 /pmc/articles/PMC9080613/ /pubmed/35539682 http://dx.doi.org/10.1039/c8ra02479k Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Liu, Feiyan
Liu, Zhihong
Gao, Shuyu
You, Qingliang
Zou, Liyong
Chen, Jia
Liu, Jiyan
Liu, Xueqing
Polyimide film with low thermal expansion and high transparency by self-enhancement of polyimide/SiC nanofibers net
title Polyimide film with low thermal expansion and high transparency by self-enhancement of polyimide/SiC nanofibers net
title_full Polyimide film with low thermal expansion and high transparency by self-enhancement of polyimide/SiC nanofibers net
title_fullStr Polyimide film with low thermal expansion and high transparency by self-enhancement of polyimide/SiC nanofibers net
title_full_unstemmed Polyimide film with low thermal expansion and high transparency by self-enhancement of polyimide/SiC nanofibers net
title_short Polyimide film with low thermal expansion and high transparency by self-enhancement of polyimide/SiC nanofibers net
title_sort polyimide film with low thermal expansion and high transparency by self-enhancement of polyimide/sic nanofibers net
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9080613/
https://www.ncbi.nlm.nih.gov/pubmed/35539682
http://dx.doi.org/10.1039/c8ra02479k
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