Making particle size library of polystyrene latexes prepared through surfactant-free emulsion polymerization: from nano to micronsize

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Autores principales: Ramezanpour, Maede, Nikzad, Elham, Rezaee Shirin-Abadi, Abbas
Formato: Recurso digital
Lenguaje:inglés
Publicado: Zenodo 2023
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author Ramezanpour, Maede
Nikzad, Elham
Rezaee Shirin-Abadi, Abbas
author_facet Ramezanpour, Maede
Nikzad, Elham
Rezaee Shirin-Abadi, Abbas
contents Polystyrene latexes where the stabilizing moiety originated from I) the inistab (initiator + stabilizer), 4,4'- Azobis(4-cyanopentanoic acid) (ACPA), II) acrylic acid (AA) (in situ copolymerized) or/and III) previously synthesized poly(acrylic acid)-block-polystyrene (PAA-b-PS) were prepared via surfactant-free emulsion polymerization (SFEP). This attitude of incorporating the sodium carboxilate groups (COO?Na+) as negatively charged stabilizing moieties in different materials yield quite different nucleation mechanism. Therefore, the different particle size would be expected. The average size of latex particles were ranged from 1.3 micron to 50nm. Using ACPA as the only stabilizer produced latexes that were ranged from 200nm to 1.3 micron. In contrast, when the stabilizing moieties originated from PAA-b-PS, the latexes exhibited the size below the 100nm. By combining the use of both in situ polymerized ACPA inistab, AA monomer with/without PAA-b-PS, we were able to produce latexes with tunable polystyrene particle sizes. 2023, The Polymer Society, Taipei.
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publisher Zenodo
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spellingShingle Making particle size library of polystyrene latexes prepared through surfactant-free emulsion polymerization: from nano to micronsize
Ramezanpour, Maede
Nikzad, Elham
Rezaee Shirin-Abadi, Abbas
Nucleation
Particle size
Surfactant-free emulsion polymerization
Polystyrene latexes where the stabilizing moiety originated from I) the inistab (initiator + stabilizer), 4,4'- Azobis(4-cyanopentanoic acid) (ACPA), II) acrylic acid (AA) (in situ copolymerized) or/and III) previously synthesized poly(acrylic acid)-block-polystyrene (PAA-b-PS) were prepared via surfactant-free emulsion polymerization (SFEP). This attitude of incorporating the sodium carboxilate groups (COO?Na+) as negatively charged stabilizing moieties in different materials yield quite different nucleation mechanism. Therefore, the different particle size would be expected. The average size of latex particles were ranged from 1.3 micron to 50nm. Using ACPA as the only stabilizer produced latexes that were ranged from 200nm to 1.3 micron. In contrast, when the stabilizing moieties originated from PAA-b-PS, the latexes exhibited the size below the 100nm. By combining the use of both in situ polymerized ACPA inistab, AA monomer with/without PAA-b-PS, we were able to produce latexes with tunable polystyrene particle sizes. 2023, The Polymer Society, Taipei.
title Making particle size library of polystyrene latexes prepared through surfactant-free emulsion polymerization: from nano to micronsize
topic Nucleation
Particle size
Surfactant-free emulsion polymerization
url https://doi.org/10.1007/s10965-023-03582-0