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Facile synthesis of novel calcium silicate hydrated-nylon 6/66 nanocomposites by solution mixing method

In this article a facile and green procedure for the synthesis of novel calcium silicate hydrated-nylon 6/66 nanocomposites is proposed. Calcium silicate hydrate (CSH) was synthesized by a hydrolysis technique assisted by ultrasound and using sodium dodecyl sulphate (SDS) as surfactant. CSH-nylon 6/...

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Autores principales: Estrada-Flores, S., Martínez-Luévanos, A., Bartolo-Pérez, P., García-Cerda, L. A., Flores-Guia, T. E., Aguilera-González, E. N.
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/PMC9091975/
https://www.ncbi.nlm.nih.gov/pubmed/35558795
http://dx.doi.org/10.1039/c8ra07116k
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author Estrada-Flores, S.
Martínez-Luévanos, A.
Bartolo-Pérez, P.
García-Cerda, L. A.
Flores-Guia, T. E.
Aguilera-González, E. N.
author_facet Estrada-Flores, S.
Martínez-Luévanos, A.
Bartolo-Pérez, P.
García-Cerda, L. A.
Flores-Guia, T. E.
Aguilera-González, E. N.
author_sort Estrada-Flores, S.
collection PubMed
description In this article a facile and green procedure for the synthesis of novel calcium silicate hydrated-nylon 6/66 nanocomposites is proposed. Calcium silicate hydrate (CSH) was synthesized by a hydrolysis technique assisted by ultrasound and using sodium dodecyl sulphate (SDS) as surfactant. CSH-nylon 6/66 nanocomposites were obtained by a solution mixing method at CSH loadings of 2.5, 25, 50 and 75 weight percent (samples CA, CD, CB and CC, respectively). The synthesis of CSH was confirmed by DRX and ATR-FTIR techniques; the CSH sample presents as mesoporous with a diameter between 3.34 nm and 52.68 nm and an average size of 27.07 nm; the specific surface area of the CSH sample was 343.99 m(2) g(−1). The formation of the CSH-nylon 6/66 nanocomposites was confirmed by ATR-FTIR, SEM, XRD, TGA, DSC and XPS techniques. The crystallization and melting temperatures (T(m) and T(c), respectively) of CSH-nylon 6/66 nanocomposites occur at a slightly lower temperatures than those of neat Ny 6/66. These results suggest a slight decrease of the crystallite size and crystallization rate of nylon 6/66. The fusion enthalpy (ΔH(f)) decreases with increase in CSH content in nylon 6/66, which can be associated to a good dispersion. The XRD peaks of the nylon 6/66 at 19.99° and 23.77° were displaced at slightly higher values of 2θ with the incorporation of CSH in the polymer forming nanocomposite materials.
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spelling pubmed-90919752022-05-11 Facile synthesis of novel calcium silicate hydrated-nylon 6/66 nanocomposites by solution mixing method Estrada-Flores, S. Martínez-Luévanos, A. Bartolo-Pérez, P. García-Cerda, L. A. Flores-Guia, T. E. Aguilera-González, E. N. RSC Adv Chemistry In this article a facile and green procedure for the synthesis of novel calcium silicate hydrated-nylon 6/66 nanocomposites is proposed. Calcium silicate hydrate (CSH) was synthesized by a hydrolysis technique assisted by ultrasound and using sodium dodecyl sulphate (SDS) as surfactant. CSH-nylon 6/66 nanocomposites were obtained by a solution mixing method at CSH loadings of 2.5, 25, 50 and 75 weight percent (samples CA, CD, CB and CC, respectively). The synthesis of CSH was confirmed by DRX and ATR-FTIR techniques; the CSH sample presents as mesoporous with a diameter between 3.34 nm and 52.68 nm and an average size of 27.07 nm; the specific surface area of the CSH sample was 343.99 m(2) g(−1). The formation of the CSH-nylon 6/66 nanocomposites was confirmed by ATR-FTIR, SEM, XRD, TGA, DSC and XPS techniques. The crystallization and melting temperatures (T(m) and T(c), respectively) of CSH-nylon 6/66 nanocomposites occur at a slightly lower temperatures than those of neat Ny 6/66. These results suggest a slight decrease of the crystallite size and crystallization rate of nylon 6/66. The fusion enthalpy (ΔH(f)) decreases with increase in CSH content in nylon 6/66, which can be associated to a good dispersion. The XRD peaks of the nylon 6/66 at 19.99° and 23.77° were displaced at slightly higher values of 2θ with the incorporation of CSH in the polymer forming nanocomposite materials. The Royal Society of Chemistry 2018-12-14 /pmc/articles/PMC9091975/ /pubmed/35558795 http://dx.doi.org/10.1039/c8ra07116k Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Estrada-Flores, S.
Martínez-Luévanos, A.
Bartolo-Pérez, P.
García-Cerda, L. A.
Flores-Guia, T. E.
Aguilera-González, E. N.
Facile synthesis of novel calcium silicate hydrated-nylon 6/66 nanocomposites by solution mixing method
title Facile synthesis of novel calcium silicate hydrated-nylon 6/66 nanocomposites by solution mixing method
title_full Facile synthesis of novel calcium silicate hydrated-nylon 6/66 nanocomposites by solution mixing method
title_fullStr Facile synthesis of novel calcium silicate hydrated-nylon 6/66 nanocomposites by solution mixing method
title_full_unstemmed Facile synthesis of novel calcium silicate hydrated-nylon 6/66 nanocomposites by solution mixing method
title_short Facile synthesis of novel calcium silicate hydrated-nylon 6/66 nanocomposites by solution mixing method
title_sort facile synthesis of novel calcium silicate hydrated-nylon 6/66 nanocomposites by solution mixing method
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9091975/
https://www.ncbi.nlm.nih.gov/pubmed/35558795
http://dx.doi.org/10.1039/c8ra07116k
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