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Synthesis and characterization of maleimide-functionalized polystyrene-SiO(2)/TiO(2) hybrid nanocomposites by sol–gel process

Maleimide-functionalized polystyrene (PSMA-SiO(2)/TiO(2)) hybrid nanocomposites were prepared by sol–gel reaction starting from tratraethoxysilane (TEOS) and titanium isopropoxide in the solution of polystyrene maleimide in 1,4-dioxane. The hybrid films were obtained by the hydrolysis and polyconden...

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Detalles Bibliográficos
Autores principales: Ramesh, Sivalingam, Sivasamy, Arumugam, Kim, Joo-Hyung
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Springer 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3507763/
https://www.ncbi.nlm.nih.gov/pubmed/22738226
http://dx.doi.org/10.1186/1556-276X-7-350
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author Ramesh, Sivalingam
Sivasamy, Arumugam
Kim, Joo-Hyung
author_facet Ramesh, Sivalingam
Sivasamy, Arumugam
Kim, Joo-Hyung
author_sort Ramesh, Sivalingam
collection PubMed
description Maleimide-functionalized polystyrene (PSMA-SiO(2)/TiO(2)) hybrid nanocomposites were prepared by sol–gel reaction starting from tratraethoxysilane (TEOS) and titanium isopropoxide in the solution of polystyrene maleimide in 1,4-dioxane. The hybrid films were obtained by the hydrolysis and polycondensation of TEOS and titanium isopropoxide in maleimide-functionalized polystyrene solution followed by the Michael addition reaction. The transparency of polymer (PSMA-SiO(2)/TiO(2)) hybrid was prepared from polystyrene titanium isopropoxide using the γ-aminopropyltriethoxy silane as crosslinking agent by in situ sol–gel process via covalent bonding between the organic–inorganic hybrid nanocomposites. The maleimide-functionalized polystyrene was synthesized by Friedel-Crafts reaction from N-choloromethyl maleimide. The FTIR spectroscopy data conformed the occurrence of Michael addition reaction between the pendant maleimide moieties of the styrene and γ-aminopropyltriethoxysilane. The chemical structure and morphology of PSMA-SiO(2)/TiO(2) hybrid nanocomposites were characterized by FTIR, nuclear magnetic resonance (NMR), (13) C NMR, SEM, XRD, and TEM analyses. The results also indicate that the inorganic particles are much smaller in the ternary systems than in the binary systems; the shape of the inorganic particles and compatibility for maleimide-functionalized polystrene and inorganic moieties are varied with the ratio of the inorganic moieties in the hybrids. Furthermore, TGA and DSC results indicate that the thermal stability of maleimide-functionalized polystyrene was enhanced through the incorporation of the inorganic moieties in the hybrid materials.
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spelling pubmed-35077632012-11-29 Synthesis and characterization of maleimide-functionalized polystyrene-SiO(2)/TiO(2) hybrid nanocomposites by sol–gel process Ramesh, Sivalingam Sivasamy, Arumugam Kim, Joo-Hyung Nanoscale Res Lett Nano Express Maleimide-functionalized polystyrene (PSMA-SiO(2)/TiO(2)) hybrid nanocomposites were prepared by sol–gel reaction starting from tratraethoxysilane (TEOS) and titanium isopropoxide in the solution of polystyrene maleimide in 1,4-dioxane. The hybrid films were obtained by the hydrolysis and polycondensation of TEOS and titanium isopropoxide in maleimide-functionalized polystyrene solution followed by the Michael addition reaction. The transparency of polymer (PSMA-SiO(2)/TiO(2)) hybrid was prepared from polystyrene titanium isopropoxide using the γ-aminopropyltriethoxy silane as crosslinking agent by in situ sol–gel process via covalent bonding between the organic–inorganic hybrid nanocomposites. The maleimide-functionalized polystyrene was synthesized by Friedel-Crafts reaction from N-choloromethyl maleimide. The FTIR spectroscopy data conformed the occurrence of Michael addition reaction between the pendant maleimide moieties of the styrene and γ-aminopropyltriethoxysilane. The chemical structure and morphology of PSMA-SiO(2)/TiO(2) hybrid nanocomposites were characterized by FTIR, nuclear magnetic resonance (NMR), (13) C NMR, SEM, XRD, and TEM analyses. The results also indicate that the inorganic particles are much smaller in the ternary systems than in the binary systems; the shape of the inorganic particles and compatibility for maleimide-functionalized polystrene and inorganic moieties are varied with the ratio of the inorganic moieties in the hybrids. Furthermore, TGA and DSC results indicate that the thermal stability of maleimide-functionalized polystyrene was enhanced through the incorporation of the inorganic moieties in the hybrid materials. Springer 2012-06-27 /pmc/articles/PMC3507763/ /pubmed/22738226 http://dx.doi.org/10.1186/1556-276X-7-350 Text en Copyright ©2012 Ramesh et al.; licensee Springer. http://creativecommons.org/licenses/by/2.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution License ( http://creativecommons.org/licenses/by/2.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Nano Express
Ramesh, Sivalingam
Sivasamy, Arumugam
Kim, Joo-Hyung
Synthesis and characterization of maleimide-functionalized polystyrene-SiO(2)/TiO(2) hybrid nanocomposites by sol–gel process
title Synthesis and characterization of maleimide-functionalized polystyrene-SiO(2)/TiO(2) hybrid nanocomposites by sol–gel process
title_full Synthesis and characterization of maleimide-functionalized polystyrene-SiO(2)/TiO(2) hybrid nanocomposites by sol–gel process
title_fullStr Synthesis and characterization of maleimide-functionalized polystyrene-SiO(2)/TiO(2) hybrid nanocomposites by sol–gel process
title_full_unstemmed Synthesis and characterization of maleimide-functionalized polystyrene-SiO(2)/TiO(2) hybrid nanocomposites by sol–gel process
title_short Synthesis and characterization of maleimide-functionalized polystyrene-SiO(2)/TiO(2) hybrid nanocomposites by sol–gel process
title_sort synthesis and characterization of maleimide-functionalized polystyrene-sio(2)/tio(2) hybrid nanocomposites by sol–gel process
topic Nano Express
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3507763/
https://www.ncbi.nlm.nih.gov/pubmed/22738226
http://dx.doi.org/10.1186/1556-276X-7-350
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