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Ramos, J., Martin-Molina, A., Sanz-Izquierdo, M.P., Rus, A., Borque, L., Hidalgo-Alvarez, R., Galisteo-Golzalez, F. and Forcada, J. (2003) Amino-Functionalized Latex Particles Obtained by a Multistep Method: Development of a New Immunoreagent. Journal of Polymer Science Part A: Polymer Chemistry, 41, 2404-2411.
https://doi.org/10.1002/pola.10782
Sharma, G. and Ballauff, M. (2004) Spherical Polyelectrolyte Brushes as Nanoreactors for the Generation of Gold Particles. Macromolecular Rapid Communications, 25, 547-552.
https://doi.org/10.1002/marc.200300107
has been cited by the following article:
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TITLE:
Potentialities of the Poly(Aminoethyl Methacrylate) p(AMA) as Gelatin-Like Polymer in Complex Coacervation
AUTHORS:
Nicolas Esselin, Frédérique Portolan, Nouha Domloge, David Rees, Osama M. Musa, Jean-François Pilard
KEYWORDS:
p(AMA), Complex Coacervation, Encapsulation, Polymerization
JOURNAL NAME:
Journal of Encapsulation and Adsorption Sciences,
Vol.6 No.4,
December
14,
2016
ABSTRACT: In order to overcome all encapsulation variations during a complex coacervation process, the replacement of gelatin cationic polymer has been performed using p(AMA). The synthesis of p(AMA) was realized through a random radical methodology. Under these conditions a polymer with 18,600 g/mol was found appropriate for optimal capsule yield and physico-chemical properties. Turbidity measurements performed during the coacervation reactions with different ratios of both CMC and p(AMA) allowed optimizing coacervation conditions. Coacervates characterizations particularly demonstrate the stability of the capsules exhibiting a break strength over 3 N/m2.
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